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  • Presagis Unveils Three New Products at I/ITSEC

    27 novembre 2017 | Local, Aérospatial, Terrestre, C4ISR, Sécurité

    Presagis Unveils Three New Products at I/ITSEC

    Orlando, USA – November 27, 2017 – Presagis is introducing three new products to the training and simulation market at the Interservice/Industry Training, Simulation and Education Conference (I/ITSEC) taking place November 27 to December 1 in Orlando, Florida. A leader in modeling and simulation software, Presagis is bolstering its line of sensor simulators with the introduction of ONDULUS NVG, Panorama -- an image generation platform, and VELOCITY, a next-generation solution for the production of large synthetic training environments. “By supplying simulation software to most of the top 100 defense and aerospace companies in the world, Presagis is extremely well positioned to capture the needs of our customers by innovating and developing solutions that respond directly to their needs,” explains Jean-Michel Brière, Presagis' President. “These three products – Ondulus NVG, Panorama, and VELOCITY -- not only provide our customers with more accuracy, realism, and cost-savings, but mark significant technological achievements in the evolution of our company.” Panorama is a competitively-priced image generation system that gives organizations the ability to add high-fidelity, scalable imaging to their simulation solutions. Leveraging Vega Prime, Ondulus and other Presagis software solutions, Panorama is capable of providing Out-of-the-Window (OTW), Electro-Optical (EO), night-vision goggles (NVG) and infrared (IR) views for ground, air, and marine domains. VELOCITY is a new, revolutionary way of building synthetic environments that will permit agencies and organizations to analyze and use the unmanageable amounts of data they have to automate the creation of rich, immersive 3D virtual environments. Building on the success of the Ondulus family of sensor products, Ondulus NVG gives users the ability to add realistic physics-based night-vision sensor simulation to their research, training or mission planning environments. Ondulus NVG supports both passive and active illumination. In addition to these new products, Presagis is also launching the newest version of its M&S Suite – version 17. Comprising industry-standard software such as STAGE, Creator, Terra Vista, and Vega Prime, M&S Suite 17 is set to release in early 2018 with an arsenal of new features. “The M&S Suite is a pillar in the Presagis portfolio. We continue to respond to our customers' needs by providing new features and tools for content creators, as well as wider access and more scripting functionality for developers. Every product in the suite has been improved – from Creator and Terra Vista, to the simulators and Vega Prime. The Ondulus family in particular received many improvements in the form of new detectors for Ondulus IR, and several new radar modes for Ondulus Radar,” said Stéphane Blondin, Presagis' Vice President of Product Management and Marketing. Presagis will also be showcasing its series of customizable simulators, HELI CRAFT and UAV CRAFT. In response to the increasing demand for open architecture simulators and training devices, Presagis offers virtual unmanned aerial vehicle (UAV) station and a helicopter simulator. These reference platforms integrate nearly all Presagis commercial off-the-shelf simulation products and technology, and can be used as advanced start points for customers interested in building their own simulators. Presagis will be demonstrating its full range of simulation software and solutions at the upcoming Interservice/Industry Training, Simulation and Education Conference (I/ITSEC) from November 27 to December 1 in Orlando, FL. (Presagis booth: #1762). About Presagis Presagis is a global leader providing commercial modeling, simulation and embedded software solutions to the aerospace, defense and security, and critical infrastructure markets. Presagis combines an open simulation development framework with expert professional services to help customers streamline development workflows, reduce project risks, and deliver game-quality immersive simulations. Presagis is also at the forefront of avionics software design for certifiable cockpit displays. The company serves hundreds of customers worldwide, including many of the world's most respected organizations such as Boeing, Lockheed Martin, Airbus, BAE Systems, and CAE. For more information, visit www.presagis.com. For further information: Stéphane Blondin, Vice President of Product Management and Marketing, Tel: +1 514 341.3874, E-Mail: Stephane.Blondin@presagis.com https://www.presagis.com/fr/press-center/detail/presagis-unveils-three-new-products-at-i-itsec/

  • Emphasizing Innovation

    23 novembre 2017 | Local, Aérospatial

    Emphasizing Innovation

    On the opening day of CANSEC 2017, Canada's largest defence and security tradeshow, standing before a collage of innovative technologies that had shaped the sector over the past century, Navdeep Bains, minister of Innovation, Science and Economic Development, applauded Lockheed Martin for completing its $1.4 billion industrial and technological benefit (ITB) commitments for the CC-130J Hercules. “To remain competitive, Canada must be committed to innovation,” said Bains as he described Lockheed's final investments in four small companies developing novel applications in artificial intelligence (AI), sensing equipment, multi-functional materials for solar panels and wireless power transfer. “That means continuously finding new ways of doing things better.” Unexpected as the public acknowledgement was, the words rang true for Charles Bouchard. Looking for better ways of doing business is almost a mantra for the chief executive of Lockheed Martin Canada. But perhaps not in places you might expect. “Innovation–that is the future of this company,” he told Skies in a recent interview. Lockheed Martin is best known as a defence company, the largest weapons contractor in the United States, with military-related revenues of around US$50 billion. And Bouchard makes no bones about that. But when he describes Lockheed's future areas of innovation, it's in space and deep-sea exploration; in energy management and conservation, perhaps in Canada's northern communities; in quantum computing, cybersecurity, AI, robotics and other ground-breaking technologies like automation, directed energy and synthetic biology. “This is what excites me about this company. This is what the future looks like and we in Lockheed Martin get to see it,” said the retired Royal Canadian Air Force (RCAF) lieutenant-general, who, over the course of a 37-year career, held senior positions in NORAD and NATO. “For us it's always, what's the next bound?” That corporate thinking has shaped Lockheed's approach to the companies in which it chooses to invest. ITBs, making investments in Canadian companies and academic research equal to the value of a major defence contract, might be an obligation, a crucial box to be checked in any proposal–and the more regional representation, the better. But, they also present an opportunity to explore the cutting edge of technology, capture new ideas and capabilities, and secure long-term partnerships. All of which can be game-changing. “A successful ITB is when we have met our commitment, and, even better, when we can do that on time or ahead of time like we did with CC-130J,” explained Bouchard. “But it's also when we leave [a company] bigger and better than when we came in. If you look at our investments in quantum computing–D-Wave Systems and QRA–we not only met our commitments, we left them stronger. This is not a transactional deal, it's a transformational deal.” Gabe Batstone understands the value of that deal well. A former CEO of NGrain, an early supplier to Lockheed Martin's F-35 Joint Strike Fighter program, he said establishing a relationship with the defence and security giant was one of his first priorities after co-founding Ottawa-based Contextere. “It is a significant benefit to a small company,” he said of Lockheed's $1.1 million investment in his AI software. “The money is certainly part of it. But as much as anything, it's being able to say that Lockheed Martin has invested and will be a user of your technology. That's significant when you go to talk to other large manufacturers, whether in aerospace or other sectors. “And the association with a company that is transformational, that's also big,” he added. “It gives you credibility that would be very hard to attain in other ways.” As part of an ITB investment for the CC-130J, Contextere is developing an AI-powered solution to deliver real-time notification to Lockheed maintenance workers on their phones. The technology is premised on the fact that, “close to 25 per cent of the time when people go to put warm hands on cold steel, they are unable to finish the procedure,” said Batstone. “Sometimes there's an error, sometimes they don't have the right tool. Other times the problem they originally identified isn't the one they have now come to encounter. There's some natural inefficiency as it relates to the maintenance of complex assets.” In addition to increasing worker productivity, reducing errors and improving safety, the software offers a way to capture the knowledge and skills of an aging workforce and utilize wearable technology like Microsoft HoloLens or Samsung GearHub to share those insights with a new generation. “We've got this huge blue collar workforce, not just in aerospace but in everything from elevator mechanics to power and utility workers, and they are retiring with all this tribal and enterprise knowledge,” said Batstone. “How do we capture that and disseminate it to Millennials, who learn and operate in a completely different way? Lockheed obviously has a huge skilled workforce and they are not immune from the realities of demographics.” The initial investment is intended for Lockheed's workforce, but the capability could be extended to third-party service providers like Cascade Aerospace of Abbotsford, B.C., one of only two approved C-130 Hercules service and heavy maintenance centres, or frontline military maintainers. “It will go down in the history of Contextere as one of the early highlights and seminal moments in our growth,” said Batstone about Lockheed's ITB investment. SEEING STABILITY The value of the Lockheed brand can't be understated, said Jim Andrews, general manager of Lockheed Martin Commercial Engine Solutions (LMCES). Andrews was part of Air Canada Technical Services in Montreal, the forerunner to Aveos Fleet Performance, whose assets and tools were acquired by Lockheed Martin Canada in 2013. From a start of just seven employees when the engine maintenance, repair and overhaul (MRO) facility re-opened in September 2013, LMCES Montreal has grown to over 250 people and doubled revenue year over year. It has a mandate to reach around 500 employees. “The previous facility had a very good name around the world for quality and service,” said Andrews, “and we've hired back many of the same people, but the name Lockheed Martin does bring comfort to the airlines that we deal with. Everyone thinks military, but even the commercial airlines see stability; they see financial strength.” LMCES provides MRO services to international air forces and recently closed a deal with the U.S. Air Force for work on the KC-10 aerial refuelling tanker. But in the past 18 months, the company has signed exclusive agreements with Frontier Airlines and Air Wisconsin for work on CFM56-5 and CFM34-3 engines, respectively, adding to a customer base that includes major North American and European airlines. Andrews said LMCES deliberately rebranded itself as a commercial entity to attract a global market and assure prospective customers the facility had a commercial focus. The brand has helped attract talent in Montreal's large aerospace cluster, where engine manufacturers like Pratt & Whitney Canada and GE Aviation are also seeking young technicians and engineers from the region's numerous colleges, universities and business schools. “We're still in our infancy...[but] the world is open to us,” said Andrews. “We have the Lockheed name, the Montreal location, an extremely skilled workforce and a very good reputation for doing what is right, committing to our customers and executing on what we say.” CDL's John Molberg would agree about the value of the Lockheed name. In 2012, Lockheed acquired CDL Systems, a Calgary-based firm of 60 employees founded in 1992 from technology developed by Defence Research and Development Canada-Suffield. Its software for unmanned aerial systems ground control stations was already well established–it had amassed over 1.5 million flight hours on more than 30 different platforms, and had as its primary customer the U.S. Army with the MQ-1C Gray Eagle, RQ-7 Shadow, and RQ-5 Hunter, among others. Now, as part of Lockheed's Rotary and Mission Systems business, CDL Systems is seeing opportunities beyond the military, said Molberg, its business development manager. The company recently released Hydra Fusion Tools, a suite of tools that allows users to fuse and create a 3D world from captured terrain data. More impressive, the software can generate real-time, precise 3D models from multiple 2D images through what is known as simultaneous localization and mapping. “Right now, as far as I'm aware, no one else has the capability to do a live 3D model,” said Molberg. While military and police are logical customers for a tactical terrain picture that can be manipulated and measured and provide change analysis in real time, “You'd be surprised how many businesses are interested in this–pipelines, building roads, pouring concrete. It's a new way of looking at the terrain [and] making the most of big data.” OFFERING SOLUTIONS The acquisition of Sikorsky Aircraft in November 2015 also provides Lockheed with another entry into the civil side of Canadian aviation. Sikorsky, of course, has had a firm footprint in Canada for years with corporate clients and offshore providers like Cougar Helicopters and HNZ. Chief executive Bouchard said the immediate priority remains on the military side with the introduction of the CH-148 Cyclone into service with the Royal Canadian Air Force (RCAF) and Royal Canadian Navy (RCN). It may then shift to an eventual replacement for the CH-146 Griffon–Lockheed believes the Sikorsky UH-60 Black Hawk might fit the likely requirements. But there is no question “Canada is helicopter country,” said Bouchard, and Lockheed will be looking beyond the oil and gas sector that tends to drive helicopter sales to other areas in natural resources management, support to Arctic operations, medevac, and augmenting search and rescue capability. “We are looking not only at the more conventional helicopters, but also at the use of unmanned helicopters, whether it's pipeline monitoring, fighting forest fires or resupply,” he said, noting the partnership with Kaman Aerospace that has transformed the K-Max helicopter into an unmanned platform capable of autonomous or remote-controlled operations. “Anything that is boring, dangerous or repetitive can be done without a pilot on board.” He added, “Take it one step bigger and we are talking about airships.” Lockheed is expecting to launch its first commercial airship next year with Quest Rare Minerals, which plans to eventually operate a fleet of seven helium-filled aircraft from its Strange Lake rare earth mining facility along the Quebec-Labrador border. “I'm not limited by what we have today,” said Bouchard. “I can envision what we'll have tomorrow. I don't approach [problems] with the idea that, this is what we make, therefore this is where I want to go. It's more, what are the challenges of the customer and how can we be the solution? That's why we are always looking for new ideas.” SERVICE AND SUPPORT Among those new ideas is a change in approach to in-service support (ISS). One of the ongoing challenges for military aircraft is keeping pace with technology. In 2016, Cascade Aerospace, an operating unit of IMP Aerospace & Defence, completed a block upgrade on the RCAF's 17 CC-130J Hercules aircraft, a fleet acquired in 2007 and introduced into service beginning in 2010. Though the transport aircraft were barely five years old, changes across the global fleet and new Canadian requirements necessitated a sizeable upgrade package. Previously, with legacy CC-130 fleets, the RCAF would have likely managed an incremental program. With the J-model, however, Lockheed Martin has retained all intellectual property and data. Together with its global customers and suppliers, it develops and tests each upgrade package before providing maintenance centres like Cascade with a single kit for each aircraft. In this case, the upgrade from Block 6.0 to 7.0 involved three large modifications: a multinational block involving changes developed and available to all C-130J operators; a U.S. Air Force developed block; and a series of design requirements unique to Canada. To confirm new systems could be installed and integrated, the first RCAF aircraft was modified and tested by Lockheed Martin in Marietta, Ga., before complete kits for the remaining 16 were sent to Cascade. “That is how most of our fleets will continue to be postured,” LGen Mike Hood, RCAF commander, said of the new ISS approach. “We will continue to upgrade them in blocks along with our allies that are flying those aircraft. It is certainly a change in our operating concept since I started flying in the late '80s.” For Cascade, the block approach was a significant change from how it had long maintained legacy CC-130 fleets. But it represents “an easier way of conducting several modifications together,” Pierre Carignan, Cascade's director of C-130 programs, said at the time. “It is more efficient because you only open up things in the airplane once. ...[H]istorically, Canada would perhaps ask the contractor to do a few modifications together, but not necessarily this many all at once.” That early success has encouraged Lockheed to consider a similar approach to the long-term maintenance for the CH-148 Cyclone. The company maintains a dedicated CC-130J team in Ottawa to respond to Canadian ISS needs, but the office remains connected to the global program. “I think it is a good balance between keeping our own proprietary information protected while at the same time providing the customer with service and teaming up with Canadian companies to make sure we share information,” said Bouchard, acknowledging that access to intellectual property can be a sticky and even contentious issue for ISS. “I've never worried about Canada receiving the information it requires to protect its sovereignty.” Whether that approach is extended to the F-35 Joint Strike Fighter (JSF) is, of course, contingent on the next-generation jet being selected to replace Canada's CF-188 Hornets. But already the F-35 is prompting a new model for engaging with Canadian industry. Rather than ITBs, the JSF program is constructed around “best value,” a process by which companies from participating nations compete and are selected to provide components not just for their country's aircraft, but for the entire F-35 fleet, which could exceed 3,500 airplanes. But the ITB principle of helping small- and medium-sized companies reach global markets remains the same. Because of the exacting manufacturing techniques and requirements for the F-35, Lockheed and its partners, BAE Systems and Northrop Grumman, put a premium on finding innovative companies “that could learn.” One example often cited is Ottawa-based Gastops, a recipient of CC-130J ITB-related investments that also supports the F-35, based in part on its earlier relationship with the F-22 Raptor. Building components for the F-35 says a lot about your capabilities elsewhere, suggested Bouchard. “If you get the Lockheed seal of approval, that tells future customers that you have advanced manufacturing capability,” he said, pointing to companies like Mississauga-based Magellan Aerospace that provides the horizontal tail assemblies. “If you can meet F-35 standards, you can meet automotive or even satellite requirements.” With or without the F-35, the Lockheed Martin footprint in Canada is large and growing. Whether in military, or, increasingly, in commercial aerospace, the company has found innovative ways to do business differently. And it is drawing on a lot of Canadian ingenuity to achieve it. https://www.skiesmag.com/features/emphasizing-innovation/

  • Innovation requires experience: AIAC panel

    23 novembre 2017 | Local, Aérospatial, Naval, Terrestre, C4ISR, Sécurité

    Innovation requires experience: AIAC panel

    Posted on November 23, 2017 by Chris Thatcher When the federal government delivered its 2017 budget last spring, innovation was mentioned 262 times and served as the focal point for numerous new initiatives. The centrepiece was the Innovation and Skills Plan, a series of proposals that included additional venture capital funding, new support for innovation in key growth areas and superclusters, and Innovation Canada, an initiative to bring siloed projects and funding programs for innovators under one roof. More recently, the government in its 2017 defence policy introduced IDEaS (Innovation for Defence Excellence and Security), a program currently seeking Treasury Board approval that will invest $1.6 billion over the next 20 years to generate solutions to complex challenges across the Canadian Armed Forces. It will also speed up the development of new technologies through contests, sandbox trials, research networks and other programs. The devil is always in the details of such initiatives, and all are in the early stages. Still, they have been widely welcomed by the aerospace sector. However, innovation is not for the inexperienced, four seasoned small business executives cautioned during the annual Canadian Aerospace Summit on Nov. 7. While government programs often appear to be tailored to recent graduates with youthful enthusiasm, true innovation doesn't succeed without business acumen. “It takes experience; it takes patience,” said Gabe Batstone, a self-described serial entrepreneur with over two decades in the tech sector, who recently launched Ottawa-based Contextere, an artificial intelligence firm focused on applications for blue collar workers that has secured funding from BMW, Lockheed Martin and Samsung. Aerospace and defence programs can take years to mature and regulations invariably play a big part in the introduction of any new technology, he said. “To bring emergent technology into complex organizations, it's about procurement [expertise], about sales, about relationships, about [understanding] regulations. The technology is the least difficult part.” In fact, tried and true business practices focused on customer relations are essential to entrepreneurial success. “I was never worried about the technology,” said John Mannarino, president of Montreal-based Mannarino Systems and Software, a company that has grown from a one-man consultancy to over 60 employees specializing in engineering services and airborne software. Rather, innovation has come from listening to customers and suppliers, and that takes time. “I had to learn.” In an address to the Summit, hosted by the Aerospace Industries Association of Canada, Michael Anderson, president of Saab North America, observed that innovation does not happen without an element of risk. “The organization that has the best ability to effectively mitigate risk while providing an environment that promotes risk-taking will eventually be a successful innovator and, of course, a successful business.” But there is a point at which small companies cannot take on more risk, said Dave Muir, president and CEO of Ottawa-based Gastops, a health monitoring firm that has developed sensor and analysis tools for complex aircraft and engines. “The larger companies are pushing risk way more down into the supply chain than they were. As a small fish there is only so far out from the shore you can swim before bad things happen.” The pace of change is also creating challenges for small business, and it's not limited to technology. Development cycles, production schedules, and time to market have all been compressed in recent years. For Patrick Thera, president of SED, a division of Calian that has been developing commercial satellite and ground systems solutions for over 50 years, that means being shrewd about where and with whom to invest. “Key collaborations are very important,” he said, noting that “coopetition” has sometimes made for unexpected partners. “One day you're competing against a fellow company and the next you're partnering with that company.” Gastops, too, has invested far more than previously in establishing collaborative networks to further its innovation. “I strongly believe, especially for a small company, that you cannot do innovation in the aerospace industry by yourself alone in the back room,” said Muir. Adapting to the pace of change can be especially difficult if you don't have the necessary specialized skills in your company. All four executives acknowledged the challenge of finding top software and engineering talent when much larger companies in every sector are pursuing the same people. But they also argued that as products become more sophisticated, expertise in procurement, project management, intellectual property and marketing is critical to innovation and a company's growth. When you are competing against cool start-ups with world-changing visions, “you have to go a long way to show people that you do offer a lot of things that they can take pride in, that you save lives every day with the technologies you create,” said Thera. https://www.skiesmag.com/news/innovation-requires-experience-aiac-panel

  • CAE USA a signé un contrat de sous-traitance avec Lockheed Martin afin d'appuyer l'élaboration de dispositifs d'entraînement aux systèmes d'armes

    20 novembre 2017 | Local, Aérospatial

    CAE USA a signé un contrat de sous-traitance avec Lockheed Martin afin d'appuyer l'élaboration de dispositifs d'entraînement aux systèmes d'armes

    Tampa (Floride, États-Unis), le 20 november 2017, 2017 - (NYSE : CAE; TSX : CAE) - CAE USA a remporté un contrat de sous-traitance de Lockheed Martin visant à appuyer la conception, l'élaboration et la fabrication de six dispositifs d'entraînement aux systèmes d'armes (WST) pour l'appareil C-130J de la United States Air Force et de la Air National Guard américaine. La commande de ces six dispositifs d'entraînement aux systèmes d'armes pour l'appareil C-130J a été reçue au cours du deuxième trimestre de l'exercice financier 2018 et a été incluse à l'annonce de revenus trimestriels effectuée le 10 novembre 2017. « Nous sommes heureux de poursuivre notre partenariat de longue date avec Lockheed Martin pour la conception et l'élaboration de systèmes de formation relatifs à l'appareil Super Hercules C-130J », a déclaré Ray Duquette, président et directeur général de CAE USA. « Les capacités haute fidélité de ces dispositifs d'entraînement aux systèmes d'armes pour l'appareil C-130J permettent aux Forces aériennes d'intégrer de plus en plus la formation virtuelle à leur programme de formation global, ce qui, en fin de compte, favorise la sécurité, l'efficacité et l'état de préparation aux missions pour les équipages. » Les dispositifs d'entraînement aux systèmes d'armes pour le C-130J sont des simulateurs de mission à système de mouvement complet qui simulent avec exactitude l'appareil et ses diverses missions. Les simulateurs recréent les sons, le mouvement, l'environnement virtuel et tous les autres systèmes requis pour fournir un environnement de formation en vol haute fidélité et réaliste. En 2020 et en 2021, ces six dispositifs d'entraînement aux systèmes d'armes pour l'appareil C-130J seront livrés à diverses bases aériennes. http://www.cae.com/CAE-USA-awarded-subcontract-from-Lockheed-Martin-to-support-development-of-C-130J-weapon-systems-trainers/?LangType=1036

  • Remote GeoSystems and North Shore Rescue Announce Successful Deployment of geoDVR and FLIR gimbal for SAR Missions with Talon Helicopters, LineVision Software Donation

    20 novembre 2017 | Local, Aérospatial, C4ISR

    Remote GeoSystems and North Shore Rescue Announce Successful Deployment of geoDVR and FLIR gimbal for SAR Missions with Talon Helicopters, LineVision Software Donation

    FORT COLLINS, Colorado/VANCOUVER, British Columbia – Remote GeoSystems, North Shore Rescue and Talon Helicopters are pleased to announce the successful deployment of a geoDVR™ Gen2 with a FLIR daylight EO/IR gyro-stabilized video camera on an Airbus TwinStar (AS355) for Search and Rescue (SAR) missions. The geoDVR Gen2 is an advanced mil-spec DVR for recording multiple channels of HD & Standard-Definition geospatial full motion video in airborne and rugged vehicle environments. The geoDVR's ability to reliably record HD color and IR, along with continuous GPS data and Live Moving Maps, makes it ideally suited for professional airborne search & rescue, law enforcement and infrastructure inspection applications that utilize multi-sensor gimbal video cameras. “Remote Geo has a reputation for building one of the industry's most dependable and user-friendly airborne geospatial video recorders, complete with flexible post-flight mapping tools. So the geoDVR Gen2 was an obvious choice when we were asked to fly the FLIR on the TwinStar for mountain search and rescue,” says Peter Murray, Founder/Operations Manager at Talon Helicopters. North Shore Rescue and Talon Helicopters team operate the geoDVR and FLIR during ground training in October 2017 “Adding the FLIR camera to North Shore Rescue's toolbox has been a great enhancement to NSR's capabilities. Having the ability to record and geo-track the location of the video seemed essential to maximizing the full potential of the FLIR camera. The geoDVR allows searchers to review recorded video for clues that may or may not have been observed during the flight,” says Jim Loree, North Shore Rescue SAR Manager and Air Operations Coordinator. According to Loree, “This feature could also be highly valuable in a large-scale disaster such as an earthquake where widespread areas are surveyed for damage. Emergency Operation Centers would be able to use the data to help them make decisions on where and how to deploy resources based on the exact location and extent of damages provided by the video recording.” North Shore Rescue and Talon Helicopters will use the geoDVR with a FLIR generously donated by Port of Vancouver to perform helicopter-based SAR operations with color and infrared. Then, using LineVision™ software post-flight, North Shore Rescue will review the geoDVR videos and flight tracks overlaid on Google Earth and Esri maps for training mission planning and recovery operations. Since North Shore Rescue is an all volunteer organization, Remote GeoSystems donated 18 LineVision Esri Maps and LineVision Google Earth licenses as part of the implementation. ### About North Shore Rescue North Shore Rescue (North Shore Search and Rescue) is a volunteer community-based Mountain Search and Rescue Team based in Vancouver, BC and performs approximately 130 rescue calls a year. The team consists of approximately 45 volunteers skilled in search and rescue operations in mountain, canyon and urban settings. The team has existed for 50 years, making it one of the oldest SAR teams in Canada. During this time the number of calls each year has gradually increased. Over the past 50 years the team has been involved in more than 2500 search and rescue operations volunteering over 200,000 hours of effort. These calls have involved over 2000 subjects, and approximately 25% of the calls have involved subject injuries or death. Learn more by visiting http://www.northshorerescue.com/ About Talon Helicopters Talon is Vancouver's number one supplier of helicopter services, and the region's largest supplier of intermediate helicopters. Talon is locally owned and operated, and provides exceptional customer service with 20 years of incident and accident free operations. Specialized mission services include search & rescue, broadcast and film, wildfire suppression and utility patrols/operations. Learn more by visiting http://www.taloncopters.com/ https://www.remotegeo.com/north-shore-rescue-talon-helicopters-geodvr-flir-sar/

  • Australian F-18s being considered by Canada will need overhaul to keep flying

    16 novembre 2017 | Local, Aérospatial

    Australian F-18s being considered by Canada will need overhaul to keep flying

    Canada is waiting to hear back from Australia on its offer to purchase F-18s from that country. The Australian planes would be added to the RCAF's flight line to shore up the existing fleet of CF-18s. But if that deal does proceed the RCAF expects that structural work will have to be done to extend the lives of the planes. RCAF commander Lt.-Gen. Michael Hood suggested to Defense News and FlightGlobal that L-3 in Quebec would get any upgrade contract since that firm has done similar work for the airforce on its existing CF-18s. But Hood told Defense News at the Dubai airshow that even with that work to be done, the RCAF would be able to acquire the Australian aircraft “within the next couple of years” once a decision is made. http://ottawacitizen.com/news/national/defence-watch/australian-f-18s-being-considered-by-canada-to-need-overhaul-to-keep-flying?utm_source=skies-daily-news-news-from-the-web

  • Mise à jour et nouveau nom du projet de système interarmées de surveillance et d’acquisition d’objectifs au moyen de véhicules aériens sans pilote

    16 novembre 2017 | Local, Aérospatial

    Mise à jour et nouveau nom du projet de système interarmées de surveillance et d’acquisition d’objectifs au moyen de véhicules aériens sans pilote

    Article de nouvelles / Le 14 novembre 2017 Aviation royale canadienne Le projet de système interarmées de surveillance et d'acquisition d'objectifs au moyen de véhicules aériens sans pilote (JUSTAS) de l'Aviation royale canadienne a été mis sur pied en vue de l'achat d'un système d'aéronef sans pilote (UAS) pour les Forces armées canadiennes (FAC). Le projet en est actuellement au stade de l'analyse des options. Cet automne, le nom du projet a été changé pour celui de système d'aéronef télépiloté (SATP). Ce changement correspond aux modifications apportées aux lexiques et aux systèmes de classification de nos alliés et reflète plus précisément le mode d'utilisation des systèmes. Comme le précise la politique de défense Protection, Sécurité, Engagement, publiée en juin 2017, les systèmes d'aéronefs télépilotés (SATP) font maintenant partie intégrante des opérations militaires modernes. Des aéronefs télépilotés (ATP), comme le CU-170 Heron de l'ARC et d'autres aéronefs sans pilote, ont été déployés au cours d'opérations militaires canadiennes et offrent plusieurs avantages, notamment la capacité de rester en vol beaucoup plus longtemps que les véhicules de surveillance stratégique actuels. L'utilisation d'aéronefs télépilotés réduit aussi les risques courus par les militaires des FAC qui font fonctionner l'appareil à distance et à partir d'un endroit moins dangereux, et permet de déterminer les menaces potentielles qui pourraient peser sur les militaires des FAC qui se trouvent dans la zone des opérations. Les aéronefs télépilotés seront munis d'une large gamme de charges utiles et de capteurs qui détecteront les sujets d'intérêt au cours d'opérations tous temps, y compris dans l'Arctique canadien, et qui pourront apporter leur concours à une large gamme de missions, de la surveillance continue aux missions de combat en passant par le soutien aux missions de recherche et de sauvetage. Les responsables du projet SATP prévoient que les aéronefs télépilotés peuvent, en fait, être employés dans le cadre des huit missions essentielles décrites dans la politique de défense Protection, Sécurité, Engagement, au pays et à l'étranger. Le projet SATP appuie directement les initiatives 91 et 92, qui indiquent que le gouvernement « investira dans divers systèmes télépilotés » et « fera de la recherche et du développement pour les capacités terrestres, maritimes et aériennes télépilotées ». Le projet SATP Bien que le nom ait changé, l'objectif du projet SATP reste d'offrir une capacité de renseignement, de surveillance, d'acquisition d'objectifs et de reconnaissance persistante à long rayon d'action. Le projet fera partie d'un réseau de systèmes de systèmes et pourra fournir des renseignements en temps quasi réel aux commandants tactiques, opérationnels et stratégiques, en soutien aux opérations au pays et aux opérations de déploiement. Au besoin, il pourra aussi fournir une capacité de frappe de précision en soutien aux opérations. Le projet vient compléter les capacités existantes des FAC, comme l'aéronef de patrouille à long rayon d'action CP-140 Aurora. Le projet SATP ne vise pas à remplacer des véhicules. Phases du projet Le projet SATP en est actuellement au stade de l'analyse des options : L'analyse des options permet à la haute direction du ministère de prendre une décision éclairée quant à la meilleure façon de mettre en œuvre un projet afin de tenter d'atteindre la capacité indiquée d'une façon acceptable aux yeux du gouvernement. Au cours de cette phase, les options sont formulées, les coûts et les avantages sont évalués et une analyse de rentabilité est développée pour chacune des options. La phase de définition d'un projet marque la transition entre la détermination de ce qui devrait être fait pour combler une insuffisance de capacité et la détermination de la façon dont l'option privilégiée sera mise en œuvre. C'est au cours de cette phase que le projet est planifié. Les activités incluent notamment : l'exécution d'un examen détaillé des exigences du projet et d'une évaluation des risques, l'établissement des coûts et la planification de la phase de mise en œuvre et le choix de la stratégie d'approvisionnement privilégiée. Les projets qui se trouvent en phase de mise en œuvre ont reçu les approbations nécessaires pour la conclusion de contrats et l'engagement des fonds et des ressources nécessaires pour que le projet soit mené à terme. La capacité opérationnelle initiale, le moment où la capacité d'emploi de la ressource est d'abord atteinte, est prévue pour l'année financière 2025-2026, selon la directive présentée dans la politique de défense Protection, Sécurité, Engagement. Coûts du projet Les coûts sont évalués dans le cadre de la phase d'analyse des options et se préciseront au cours de la phase de définition. Le coût estimatif dépendra de la stratégie d'approvisionnement approuvée, de l'infrastructure et du type de véhicule choisi. Les coûts comprendront les capteurs, les éléments au sol et l'infrastructure connexes. Nombre d'appareils Aucune décision n'a été prise relativement au nombre d'appareils. Le nombre de SATP sera suffisant pour répondre simultanément à trois lignes de missions et pourrait être touché par la stratégie d'approvisionnement, l'infrastructure, et les véhicules précis choisis. Retombées économiques La politique relative aux retombées industrielles et technologiques, proposition de valeur comprise, s'appliquera à la présente activité d'approvisionnement, et exige que l'entrepreneur principal du projet investisse 100 % de la valeur du contrat dans l'économie canadienne. La proposition de valeur est l'engagement économique que le soumissionnaire prend initialement envers le Canada au moment de la soumission, et est un facteur noté et pondéré lors du choix de l'adjudicataire. Elle devient un engagement contractuel pour l'adjudicataire. Les exigences de la proposition de valeur sont adaptées à chaque approvisionnement afin de permettre au gouvernement de canaliser les investissements et de profiter des occasions économiques uniques offertes par chaque projet. Utilisations des SATP Au pays, les SATP renforceront la capacité de surveillance des approches maritimes et nordiques du Canada et appuieront les opérations de recherche et de sauvetage. Les SATP permettront aux FAC d'aider d'autres ministères gouvernementaux en offrant du soutien à la sécurité lors d'événements spéciaux, comme les sommets internationaux, en apportant de l'aide aux autorités civiles, comme lors des incendies de forêt ou d'inondations, ainsi qu'en offrant du soutien aux opérations des autorités policières. À l'étranger, les SATP pourront détecter, reconnaître, identifier et poursuivre des cibles d'intérêt dans des milieux complexes et s'intégrer aux systèmes nécessaires pour traiter et fusionner les informations recueillies en renseignement donnant un droit d'action. Capacité de frappe de précision des SATP La politique de défense Protection, Sécurité, Engagement indique que les SATP auront une capacité de frappe de précision – ils pourront être armés. La capacité de cibler et d'exécuter des frappes de précision assure que si une menace est détectée, elle pourra aussi être neutralisée à ce moment. Comme lors de l'utilisation de tout autre système d'armes, les aéronefs télépilotés seront utilisés par les FAC conformément aux lois nationales et internationales. Les opérations seront exécutées dans le strict respect des contrôles, procédures et règles d'engagement qui régissent l'utilisation de la force ou de toute autre arme. Tous ces systèmes seraient télépilotés par des militaires des FAC participant directement au processus de prise de décision de l'exécution d'une frappe. Cependant, les SATP ne seront armés que si cela est nécessaire pour la t'che attribuée. Milieux opérationnels Le SATP pourra être utilisé partout dans le monde, dans toutes les conditions météorologiques, à tout moment de la journée, et aura le rayon d'action et l'autonomie pour atteindre tout endroit dans l'espace aérien du Canada à partir de tout emplacement d'opérations adéquat. Le système devra aussi pouvoir fonctionner dans des milieux de faible à moyen risque, dans des contextes de collaboration avec d'autres ministères gouvernementaux et dans le cadre d'une coalition avec nos alliés. L'ARC assure la souveraineté du Canada au moyen de sa capacité de répondre rapidement à toute menace. L'investissement dans le projet SATP, comme il est indiqué dans la politique de défense Protection, Sécurité, Engagement, permet d'augmenter la capacité de l'ARC de continuer à fournir une puissance aérienne de façon agile et intégrée tout en disposant de la portée nécessaire pour répondre à toute demande formulée par le gouvernement du Canada. Tout fournisseur intéressé devrait adresser toute question liée à ce projet au Responsable de l'approvisionnement de Services publics et Approvisionnement Canada (SPAC). Article: http://www.rcaf-arc.forces.gc.ca/fr/nouvelles-modele-standard.page?doc=mise-a-jour-et-nouveau-nom-du-projet-de-systeme-interarmees-de-surveillance-et-d-acquisition-d-objectifs-au-moyen-de-vehicules-aeriens-sans-pilote/j9u7rzyf

  • PAL soon hiring for SAR main operating bases

    15 novembre 2017 | Local, Aérospatial

    PAL soon hiring for SAR main operating bases

    Posted on November 15, 2017 by Chris Thatcher The in-service support and training systems team behind Canada's new fixed-wing search and rescue (FWSAR) aircraft expects to begin construction on a training centre at 19 Wing Comox, B.C., before the end of the year. Eva Martinez, PAL Aerospace vice president of in-service support, said the first shovel should break ground in December. “We're working on finalizing that date,” she told the Best Defence Conference in London, Ont., on Nov. 1. Canada's 16 C295W aircraft will likely be distributed three per base, with two marked for training and two to be rotated amongst the SAR squadrons to cover for aircraft undergoing maintenance. Airbus Photo The Royal Canadian Air Force (RCAF) will take delivery of the first of 16 Airbus C295W search and rescue aircraft in April 2020 at a renewed main operating base at 19 Wing, scheduled to be stood up in December 2019. Airbus was awarded a $2.4 billion contract in December 2016 to replace the RCAF's fleet of six CC-115 Buffalos and several CC-130H Hercules assigned to search and rescue duty. The contract includes delivery of the aircraft, construction of a state-of-the-art training centre, and the first five years of maintenance and support. Options for an additional 15 years of maintenance and support services could extend the agreement to 2042 and the total value to $4.7 billion. As part of the Airbus team, PAL Aerospace will provide program management services, in-service support (ISS), maintenance and logistics support, heavy maintenance, a mobile repair team, and manage a centralized supply chain. The two companies have created a Canadian joint venture called AirPro to serve as the ISS integrator. And as a Tier 1 supplier to Airbus, PAL will provide direct maintenance, repair and overall (MRO) services as well as logistics and engineering augmentation. While CAE Canada has responsibility for the training program, infrastructure and support, PAL has the task of creating a contractor field office and tool and parts warehouse and staffing an integrated team of aircraft maintenance engineers (AMEs) at the four main operating bases in Comox, Winnipeg, Trenton, Ont., and Greenwood, N.S. It will also set up a central warehouse in Winnipeg to supply all four bases, alongside an MRO facility for heavy inspections and the mobile repair party. An interim warehouse will be created in St. John's, N.L., until the Winnipeg facility is ready in December 2022. “Next year, we begin the wave of hiring,” said Martinez, noting that AMEs, a senior maintenance manager and other personnel will all need to be in place as the facilities and services at each main operating base come online, starting with Comox and then likely Winnipeg, Trenton and Greenwood, “though that may change.” This rendering shows the new fixed-wing search and rescue training centre to be built at 19 Wing Comox, B.C. CAE Image The 16 C295W aircraft will likely be distributed three per base, with two marked for training and two to be rotated amongst the SAR squadrons to cover for aircraft undergoing maintenance, she said. Although St. John's-based PAL has been providing airline, aviation and manufacturing services since 1972, establishing a global reputation in the process, the FWSAR contract has helped put the company “on the map” in Canada, Martinez acknowledged. As part of its central role in the program, PAL will be leaning on a wider supply chain of small and medium Canadian companies to achieve its industrial and technological benefits (ITB) obligations. “[We] will be expecting [our] suppliers to provide the support that we need so we too can meet our ITB and value proposition contractual commitments,” she said. As one of the first large projects to move through the procurement process since the government in 2014 introduced a defence procurement strategy emphasizing value propositions (VP) to enhance economic returns, the “FWSAR contract is actually the first in Canada to fall under a measured VP,” Martinez noted. “In other words, [the VP] wasn't just used for bid evaluation. A variety of tasks have already been pre-determined against which every Tier 1 will have to identify their labour hours specific to each of those tasks.” While Airbus will have an obligation to invest at least 15 per cent of its ITB commitments in small and medium enterprises, PAL's requirement is just 1.4 per cent. Martinez stressed, however, that the company would be looking well beyond that for additional Canadian content. “That does not mean we are going to cap ourselves at 1.4 per cent. We have just as much interest [as Airbus] in working with small and medium enterprises where it makes sense in terms of performance,” she said. https://www.skiesmag.com/news/pal-soon-hiring-sar-main-operating-bases/

  • French and Italian firms to submit joint bid on Canadian Surface Combatant

    14 novembre 2017 | Local, Naval

    French and Italian firms to submit joint bid on Canadian Surface Combatant

    Fincantieri of Italy and Naval Group of France have confirmed they will jointly bid the FREMM frigate for the Canadian Surface Combatant program. Bids are due on Nov. 30. Fincantieri General Manager Alberto Maestrini told analysts of the joint bid in a Nov. 10 teleconference. CSC will see the construction of 15 new warships. Maestrini also said the FREMM frigate would be well-suited for another pending program, according to a report in Defense News. “We think it will also match perfectly the requirements put forward by the U.S. Navy in their recent request for design proposals for the Future Frigate Program,” Maestrini told analysts. http://ottawacitizen.com/news/national/defence-watch/french-and-italian-firms-to-submit-joint-bid-on-canadian-surface-combatant

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