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  • Looking for a new challenge? À la recherche d'un nouveau défi ?

    29 janvier 2020 | Local, Aérospatial, Naval, Terrestre, C4ISR, Sécurité

    Looking for a new challenge? À la recherche d'un nouveau défi ?

    We have 5 new challenges! The National Research Council of Canada and the Communication Security Establishment are looking for solutions from Canadian innovators. Do you think you can solve these challenges? Nous avons 5 nouveaux défis ! Le Conseil national de recherches du Canada et le Centre de la sécurité des télécommunications cherchent des solutions auprès des innovateurs canadiens. Pensez-vous pouvoir relever ces défis ?

  • CAE contracted to upgrade NATO E-3A AWACS training devices

    29 janvier 2020 | Local, Aérospatial

    CAE contracted to upgrade NATO E-3A AWACS training devices

    CAE announced it has signed a contract amendment with the NATO Airborne Early Warning & Control Program Management Agency (NAPMA) to perform avionics updates on the E-3A flight deck simulator and E-3A flight training device located at NATO Airbase Geilenkirchen in Germany. The avionics updates to the training devices relate to the latest standards of the advanced Communication, Navigation, Surveillance/Air Traffic Management (CNS/ATM) systems currently being implemented on NATO's fleet of 14 E-3A Airborne Warning and Control System (AWACS) aircraft. The avionics updates to the E-3A flight deck simulator will be complete in 2021. “CAE has supported the training of NATO E-3A aircrews for almost 40 years, and these simulators continue to play a key role in helping ensure the readiness of the E-3A aircrews from 16 nations who carry out a range of critical missions,” said Marc-Olivier Sabourin, vice-president and general manager, Defence & Security International, CAE. “The avionics upgrades we will deliver continue our longstanding support of the E-3A training devices, and we look forward to supporting the NATO E-3A AWACS mission through 2035 as part of the Final Lifetime Extension Program of the fleet.” CAE designed and manufactured the original NATO E-3A flight deck simulator that entered service in 1982. Since that time, the simulator has been continuously upgraded and enhanced to ensure concurrency with the aircraft and enable E-3A aircrews to conduct more synthetic training. The E-3A flight deck simulator is currently qualified to Level D, the highest for flight simulators. The CAE-built E-3A flight training device is qualified to Level II and is used to support familiarization and procedural training for aircrews prior to full-mission training in the E-3A flight deck simulator. CAE is currently responsible for maintenance and support of the E-3A training devices in addition to providing a cadre of instructors and mission system operators to support the delivery of training to NATO E-3A AWACS aircrews. https://www.skiesmag.com/press-releases/cae-contracted-to-upgrade-nato-e-3a-awacs-training-devices

  • LE MARCHÉ MILITAIRE À LA PORTÉE DES PME RÉGIONALES

    23 janvier 2020 | Local, Aérospatial, Naval, Terrestre, C4ISR, Sécurité

    LE MARCHÉ MILITAIRE À LA PORTÉE DES PME RÉGIONALES

    SAGUENAY – La plupart des PME croient que le marché de la défense et des équipements militaires est complexe et inaccessible. En réalité, ce n'est pas le cas. C'est ce qu'ont expliqué Rock Lemay et Patrick Sirois de la firme Triodeaux quelque 40 entrepreneurs de la région lors d'un déjeuner-conférence organisé par la Société de la Vallée de l'Aluminium(SVA), ce matin, au Manoir du Saguenay. « Il est important pour les PME de comprendre que les contrats ne concernent pas les armements et les avions, par exemple. Il y a plein de petites et grandes entreprises qui ont découvert le marché militaire. Ce marché de la défense et des équipements militaires qui avait été délaissé pendant plusieurs années au Canada, connaît une recrudescence dans les investissements afin de renouveler les équipements nécessaires aux soldats. Il ne s'agit pas seulement des produits de haute technologie, mais également de produits et de l'équipement communs tels que les bateaux, les camions, les plateformes, les uniformes et bien d'autres. Par exemple, l'entreprise d'autobus Prévost a une division militaire. L'armée a acheté 1 500 camions en France et Prévost doit les habiller avec des équipements adaptés. C'est là que les sous-traitants rentrent en ligne de compte et peut fournir des équipements comme des coffres, échelle, pièces de métal, plateforme, etc. », explique Patrick Sirois, président de Triode. Forte croissance Au cours des 10 prochaines années, les besoins du marché de la défense connaîtront une forte croissance. Les budgets pour le renouvellement des équipements sont déjà votés et alloués et les différents départements de l'armée s'affairent à déterminer leurs besoins avant d'aller en appel d'offres. « Autre facteur intéressant, Développement économique Canada (DEC) a mis en place au cours des dernières années une politique de retombées industrielles et technologiques qui favorisent les PME et les régions. En gros, cette politique assure que même si le contrat est octroyé à des entreprises étrangères, celles-ci n'auront d'autre choix que de travailler avec des fournisseurs ou des partenaires locaux pour faire de la recherche ou de l'assemblage de produits. » En fait, les prochaines années promettent d'être très intéressantes dans ce marché. Nul besoin d'être impliqué dans des projets d'armement. « Il y a beaucoup d'équipements pour lesquels la défense canadienne cherchera des fournisseurs, tels que des remorques, des ponts, des ponceaux, des équipements logistiques, des conteneurs ainsi que l'ensemble de l'équipement nécessaire à installer et soutenir des campements temporaires. Tous ces projets représentent de belles opportunités pour les entreprises de la région », affirment M. Sirois et son collègue Rock Lemay en précisant que le marché de la défense et des équipements militaires est de plus en plus accessible pour les PME qui savent se préparer et qui ont un minimum de processus déployés dans leur organisation. Enfin, soulignons que ce déjeuner-conférence servait à démystifier le processus et de permettre aux PME qui le désirent d'êtres accompagnées tout au long de la démarche par la SVA et son créneau d'excellence. (Texte en collaboration avec Guy Bouchard) https://informeaffaires.com/regional/manufacturier-et-fournisseur/le-marche-militaire-a-la-portee-des-pme-regionales

  • New Call for Applications: Corrosion Detection in Ships Sandbox /Nouvel appel de candidatures : Environnement protégé relatif à la détection de la corrosion sur les navires

    22 janvier 2020 | Local, Naval

    New Call for Applications: Corrosion Detection in Ships Sandbox /Nouvel appel de candidatures : Environnement protégé relatif à la détection de la corrosion sur les navires

    De : DND.IDEaS-IDEeS.MDN@forces.gc.ca Envoyé : mercredi 22 janvier 2020 10:46 Objet : New Call for Applications: Corrosion Detection in Ships Sandbox /Nouvel appel de candidatures : Environnement protégé relatif à la détection de la corrosion sur les navires Corrosion Detection in Ships Sandbox: Rust Never Sleeps Test your best solutions to find corrosion trouble spots for the Royal Canadian Navy (RCN). The latest IDEaS sandbox, Corrosion Detection in Ships, is now accepting applications. The Sandbox will take place at the Centre for Ocean Ventures & Entrepreneurship (COVE) facility in Dartmouth, Nova Scotia and will focus on naval vessels. Participants will get the opportunity to showcase their products in realistic simulations, with successful demonstrations resulting in access to an actual vessel to demonstrate their solution in a real world environment. Apply now to test your technologies at one of the leading collaborative facilities for applied innovation in the ocean sector. The deadline to apply is February 19, 2020. Apply now: https://canada.ca/en/department-national-defence/programs/defence-ideas/understanding-ideas/sandbox/corrosion-detection-in-ships.html Need to get in touch with us? Email us at: IDEaSSandboxes-EnvironnementsprotegesIDEeS@forces.gc.ca The IDEaS Team ------------------------------------------------------------------------------------------------------------------- Environnement protégé relatif à la détection de la corrosion sur les navires : La rouille ne dort jamais Testez vos meilleures solutions pour détecter la corrosion de l'équipement de la Marine royale canadienne (MRC). Nous acceptons présentement les candidatures pour le plus récent environnement protégé relatif à la détection de la corrosion sur les navires. L'environnement protégé aura lieu dans les installations du Centre for Ocean Ventures & Entrepreneurship (COVE) à Darmouth, en Nouvelle-Écosse, et sera axé sur les navires militaires. Les participants auront l'occasion de démontrer leurs produits dans le cadre de simulations réalistes, et les participants dont les démonstrations seront réussies auront accès à un navire sur lequel ils pourront faire la preuve de leur solution dans un environnement réel. Posez votre candidature dès maintenant pour tester vos technologies dans l'une des principales installations de collaboration pour l'innovation appliquée dans le secteur océanique. L'échéance pour poser votre candidature est le 19 février 2020. Posez votre candidature maintenant : https://canada.ca/fr/ministere-defense-nationale/programmes/idees-defense/comprendre-programme-idees/environnements-proteges/detection-de-la-corrosion-a-bord-des-navires.html Besoin de communiquer avec nous? Faites-nous parvenir un courriel à l'adresse suivante : IDEaSSandboxes-EnvironnementsprotegesIDEeS@forces.gc.ca L'équipe IDEeS

  • CAE appoints Todd Probert as group president, Defence and Security

    21 janvier 2020 | Local, Aérospatial, C4ISR

    CAE appoints Todd Probert as group president, Defence and Security

    CAE has announced the appointment of Todd Probert as group president, Defence and Security, effective Jan. 27, 2020. He will be based in Washington, D.C., and is succeeding Gene Colabatistto, who retired from CAE in December 2019. “I am very pleased to welcome Todd Probert to CAE's executive management team, as our new group president, Defence and Security. He is a proven strategic business leader with the right balance of technical, business and international experience in defence and technology,” said Marc Parent, CAE's president and chief executive officer. “Todd's competencies and background are very well aligned with CAE's emphasis on digital innovation and our long-term vision to be the training partner of choice. His ability to drive business growth and create strategic partnerships will bring significant value to our company and our defence customers.” Probert worked for Raytheon, the world's fourth largest defence company, over the past 10 years. Most recently, he was leading the Command, Control, Space and Intelligence business unit as part of Raytheon's Intelligence, Information and Services segment. In this role, he spearheaded Raytheon's use of commercial software development practices and artificial intelligence for military and intelligence community customers in addition to establishing strategic relationships with Silicon Valley companies. He previously served as the vice-president of Raytheon's Mission Support and Modernization product line where he steadily grew the business during his tenure. He has formed innovative partnerships with leading tech companies to transform the development timelines and delivery of capabilities to the U.S. Department of Defense in areas such as fully open architectures, artificial intelligence and cyber security. He also held the position of vice-president, Engineering and Technology, where he managed the engineering workforce for Raytheon's Intelligence, Information and Services portfolio. Before joining Raytheon, Probert worked for Honeywell Technology Solutions, Inc. (HTSI) in various functions such as strategy and business development, planning and operations, merger and acquisition activities, and he also served as HTSI's chief technology officer. Prior to that, he worked for ANSER, where he led the Space Technology division. In 2019, Probert was named by WashingtonExec as one of the Top 10 Department of Defense (DOD) Executives to Watch based on business accomplishments, impact on the defence community and vision for the future. He also received the 2019 Aviation Week Program Excellence Award in the OEM Sustainment category. Probert holds a master's degree in aeronautical and astronautical engineering from Purdue University, where he was named Outstanding Aerospace Engineer of the Year in 2017. He has a bachelor's degree in aerospace engineering from the University of Michigan. https://www.skiesmag.com/press-releases/cae-appoints-todd-probert-as-group-president-defence-and-security

  • F-35s Are Dead: The Sixth Generation of Fighter Aircraft Is On Its Way

    21 janvier 2020 | Local, Aérospatial

    F-35s Are Dead: The Sixth Generation of Fighter Aircraft Is On Its Way

    by Kris Osborn Key point: At this rate, the F-35 won't even see combat before its outmoded. It is also possible that the new 6th-generation fighter could use advanced, futuristic stealth technology able to enable newer, more capable air defenses. The air defenses of potential adversaries are increasingly using faster computing processing power and are better networked together, more digital, able to detect a wider range of frequencies and able to detect stealthy aircraft at farther distances. The Air Force has begun experimenting and conceptual planning for a 6th generation fighter aircraft to emerge in coming years as a technological step beyond the F-35, service leaders said. "We have started experimentation, developmental planning and technology investment," Lt. Gen. Arnold Bunch, Military Deputy, Office of the Assistant Secretary of the Air Force, Acquisition, told Scout Warrior in an interview. The new aircraft, engineered to succeed the 5th-generation F-35 Joint StrikeFighter and explode onto the scene by the mid 2030s, is now in the earliest stages of conceptual development with the Air Force and Navy. The two services are now working together on early conceptual discussions about the types of technologies and capabilities the aircraft will contain. While the Air Force has not yet identified a platform for the new aircraft. The Air Force characterizes the effort in terms of a future capability called Next-Gen Air Dominance. While Bunch did not elaborate on the specifics of ongoing early efforts, he did make reference to the Air Superiority 2030 Flight Plan which delineates some key elements of the service's strategy for a future platform. Fighter jets in 20-years may likely contain the next-generation of stealth technology, electronic warfare, sophisticated computer processing and algorithms, increased autonomy, hypersonic weapons and so-called "smart-skins" where sensors are built into the side of the aircraft itself. Some of these characteristics may have been on display more than a year ago when Northrop Grumman's SuperBowl AD revealed a flashy first look at its rendering of a new 6th-generation fighter jet. Northrop is one of a number of major defense industry manufacturers who will bid for a contract to build the new plane - when the time is right. While there are not many details available on this work, it is safe to assume Northrop is advancing concepts, technology and early design work toward this end. Boeing is also in the early phases of development of a 6th-gen design, according to a report in Defense News. The Navy's new aircraft will, at least in part, replace the existing inventory of F/A-18 Super Hornets which will start to retire by 2035, Navy officials said. The Navy vision for a future carrier air wing in 2040 and beyond is comprised of the carrier-launched variant of the Joint Strike Fighter, the F-35C, and legacy aircraft such as the EA-18G Growler electronic jamming aircraft. Also, around this time is when Navy planners envision its 6th generation aircraft to be ready, an aircraft which will likely be engineered for both manned and unmanned missions. Technologies are rapidly advancing in coatings, electromagnetic spectrum issues, artificial intelligence, maneuvering, superiority in sensing the battlespace, communications and data links, Navy leaders have said. Navy officials also add that the Navy is likely to develop new carrier-launched unmanned air vehicles in coming years as well. For instance, Northrop's historic X-47B demonstrator aircraft was the first unmanned system to successfully launch and land on the deck of an aircraft carrier. Analysts have speculated that as 6th generation developers seek to engineer a sixth-generation aircraft, they will likely explore a range of next-generation technologies such as maximum sensor connectivity, super cruise ability and an aircraft with electronically configured “smart skins.” Super cruise technology would enable the new fighter jet to cruise at supersonic speeds without needing afterburner, analysts have explained. As a result, super cruise brings a substantial tactical advantage because it allows for high-speed maneuvering without needing afterburner, therefore enable much longer on-location mission time. Such a scenario provides a time advantage as the aircraft would likely outlast a rival aircraft likely to run out of fuel earlier. The Air Force F-22 has a version of supercruise technology. Maximum connectivity would mean massively increased communications and sensor technology such as having an ability to achieve real-time connectivity with satellites, other aircraft and anything that could provide relevant battlefield information.The new aircraft might also seek to develop the ability to fire hypersonic weapons, however such a development would hinge upon successful progress with yet-to-be-proven technologies such as scramjets traveling at hypersonic speeds. Some tests of early renderings of this technology have been tested successfully and yet other attempts have failed. The Air Force Chief Scientist, Dr. Geoffrey Zacharias, has told Scout Warrior that the US anticipates having hypersonic weapons by the 2020s, hypersonic drones by the 2030s and recoverable hypersonic drone aircraft by the 2040s. There is little doubt that hypersonic technology, whether it be weaponry or propulsion, or both, will figure prominently into future aircraft designs. Smart aircraft skins would involve dispersing certain technologies or sensors across the fuselage and further integrating them into the aircraft itself, using next-generation computer algorithms to organize and display information for the pilot. We see some of this already in the F-35; the aircraft sensor fusion uses advanced computer technology to collect, organize and display combat relevant information from a variety of otherwise disparate sensors onto a single screen for pilots. In addition, Northrop's Distributed Aperture System is engineered to provide F-35 pilots with a 360-degree view of the battlespace. Cameras on the DAS are engineered into parts of the F-35 fuselage itself to reduce drag and lower the aircraft's radar signature. Smart skins with distributed electronics means that instead of having systems mounted on the aircraft, you would have apertures integrated on the skin of the aircraft, analysts have said. This could reduce drag, increase speed and maneuverability while increasing the technological ability of the sensors. It is also possible that the new 6th-generation fighter could use advanced, futuristic stealth technology able to enable newer, more capable air defenses. The air defenses of potential adversaries are increasingly using faster computing processing power and are better networked together, more digital, able to detect a wider range of frequencies and able to detect stealthy aircraft at farther distances. The new 6th-generation fighter will also likely fire lasers and have the ability to launch offensive electronic attacks. https://nationalinterest.org/blog/buzz/f-35s-are-dead-sixth-generation-fighter-aircraft-its-way-114901

  • Maxar selling MDA to NPC

    17 janvier 2020 | Local, Aérospatial

    Maxar selling MDA to NPC

    Maxar announced it signed a definitive agreement to sell its Canadian business, MDA, to Northern Private Capital (NPC). You can read the details in our press release. I would like to assure you that MDA is committed to continuously delivering the high-quality of service that our customers expect. Maxar and MDA will continue normal operations through the expected close of the transaction, which we believe will happen within 12 months, after the standard U.S. and Canadian regulatory approval. After the close, the MDA team will operate as a private, stand-alone company within NPC's portfolio, retaining its name and standing as the leading space and defence company in Canada. MDA will remain an important business partner and supplier to Maxar, and Maxar will be MDA's largest customer. Additionally, the companies will continue to sell each other's complementary satellite data. NPC is a Toronto-based investment firm led by John Risley and Andrew Lapham. It has created a Canadian investment fund to finance this transaction. NPC views Canada's renewed commitment to utilizing space for its civil and defence needs as a strong opportunity to bring MDA home to Canada. MDA will remain dedicated to its work for the Canadian government and as a merchant supplier to the international community. Maxar's leadership team and Board of Directors believe this transaction best positions Maxar for growth in the future. Once closed, it will enable Maxar to reduce its debt load and focus on substantial growth opportunities in its core markets of Earth Intelligence and Space Infrastructure. And likewise, MDA will be able to focus on capturing large, Canadian programs in the future, in addition to addressing commercial and export markets.

  • RCAF still dealing with legal issues on new rescue aircraft name – military doesn’t know when it will be able to announce a name

    15 janvier 2020 | Local, Sécurité

    RCAF still dealing with legal issues on new rescue aircraft name – military doesn’t know when it will be able to announce a name

    DAVID PUGLIESE, OTTAWA CITIZEN Updated: January 13, 2020 The RCAF is still working its way through various legal issues as it tries to come up with an official Canadian name for the Airbus C-295 aircraft, the service's new fixed wing search and rescue plane. The new name was supposed to be selected by November at the earliest and December at the latest. But now the RCAF says it doesn't know when it will announce a name for the planes. “The list of possible names for the CC-295 has been further narrowed down, and those names are currently undergoing legal, contractual, and trademark vetting,” RCAF spokesperson Major Jill Lawrence explained to Defence Watch. “Once the process is complete, and when appropriate, the RCAF will formally announce the new name. At this time, there is no anticipated date for that announcement.” No details were provided on the new shortlisted names. The RCAF first consulted the operational search and rescue community which came up with ten names, later narrowed down to five. After that, the public was asked to vote on the names. Around 33,000 people voted, according to Lt.-Col. Steve Neta, the director of RCAF public affairs. Another 1,600 comments were left on various RCAF social media sites. The RCAF then went back to its search and rescue personnel for more consultation. The RCAF published the five names being considered and an explanation for each name: CANSO II: Canso aircraft served with 11 RCAF squadrons during the Second World War. They operated from both coasts and were employed in coastal patrols, convoy protection and submarine hunting. After the Second World War, Cansos served with the RCAF in photo reconnaissance and search and rescue roles until they were finally retired in November 1962. GUARDIAN: A guardian is an entity that protects a community under a set of values. IRIS: Iris refers to the faculty or power of seeing. Iris was also the goddess of sea and sky in ancient Greek mythology. KINGFISHER: Found all across Canada, this bird patrols up and down rivers, constantly searching for prey. Within the First Nations of the Northwest, the kingfisher has long been recognized for its speed and agility, as well as its keen searching and hunting skills. A kingfisher was depicted on the 1986 Canadian five-dollar banknote in the “Birds of Canada” series. TURNSTONE: Turnstones are one of the migratory marvels of the Arctic bird world. They have been known to fly more than 1,000 kilometres (600 miles) in a single day. https://ottawacitizen.com/news/national/defence-watch/rcaf-still-dealing-with-legal-issues-on-new-rescue-aircraft-name-military-doesnt-know-when-it-will-be-able-to-announce-a-name

  • Unlike Finland, Canada nixes cold-weather tests, fly-off among competing fighter jets

    15 janvier 2020 | Local, Aérospatial

    Unlike Finland, Canada nixes cold-weather tests, fly-off among competing fighter jets

    Finland, which is considering the same aircraft as Canada, for its new jet fleet, is requiring each competing aerospace company to provide two aircraft to test at low temperatures and in real world operating conditions. DAVID PUGLIESE, OTTAWA CITIZEN Updated: January 15, 2020 Canada won't conduct a fly-off between fighter jets competing to become the country's new warplane nor conduct testing to see how such aircraft perform under cold weather conditions. The decision not to proceed with such tests under Canada's $19-billion future fighter procurement program stands in contrast to Finland, which is considering the same aircraft as Canada, for its new jet fleet. Each competing aerospace company is required to provide Finland with two aircraft to test at low temperatures and be evaluated in real world operating conditions. Public Services and Procurement Canada has confirmed that Canada will not do any fly-offs among competing jet or tests for cold-weather operations like Finland has underway. “We do not have plans for an exercise of this nature,” stated department spokeswoman Stéfanie Hamel. Finland and Canada are considering the Boeing Super Hornet, Lockheed Martin F-35 and Saab Gripen. The Finnish Air Force is also testing the Dassault Rafale and the Eurofighter Typhoon, both of which pulled out of the Canadian competition because of worries the process was rigged to favour the F-35. Finland hopes to buy 64 aircraft. Canada will purchase 88 aircraft. Canadian aerospace industry representatives say the competing companies as well as allied air forces could provide Canada with results from tests they have conducted on the competing aircraft. Finland could have taken the same route but its procurement staff want to ensure the country is getting value for money since the project will cost around $14 billion. Finnish defence ministry program manager Lauri Puranen outlined in a blog post the extensive tests that will be conducted and the reasons for not relying on tests conducted by others. “The Finnish operating environment and operating methods may differ from other users' weather and lighting conditions,” Puranen stated. “Winter conditions affect the operation of the multi-function fighter and especially the performance of electro-optical systems, but possibly other active and passive systems as well.” The fighter jet candidates will be tested on the ground, in the air, and during takeoff and landing, he added. The testing of the competing aircraft is currently underway. Another series of tests involving the jets taking part in flight operations and a simulated lengthy war game will be conducted by the Finnish Air Force later this year. Finland expects to select a winner for the aircraft program in 2021. The planes, which will replace Finland's current fleet of F-18s, are expected in 2025. The Canadian government expects bids for its fighter jet program to be submitted by the end of March. A winning bidder is to be determined by early 2022. The first aircraft would be delivered to the Royal Canadian Air Force by 2025. Information about how Canada intends to evaluate the jets is limited. But Public Services and Procurement Canada has noted that technical merit will make up the bulk of the assessment at 60 per cent. Cost and economic benefits companies can provide to Canada will each be worth 20 per cent. Concerns have been raised by Lockheed Martin's rivals that the competition has been designed to favour the F-35. This newspaper reported last year the requirements for the new jets put emphasis on strategic attack and striking at ground targets during foreign missions. That criteria is seen to benefit the F-35. In addition, the federal government changed criteria on how it would assess industrial benefits after the U.S. government threatened to pull the F-35 from the competition. The Conservative government had previously selected the F-35 as the air force's new jet but backed away from that plan after concerns about the technology and growing cost. During the 2015 election campaign, Justin Trudeau vowed that his government would not purchase the F-35. But at the same time, Trudeau stated his government would hold an open competition for the fighter purchase. The Liberal government backed away from its promise to freeze out the F-35 and the aircraft is now seen as a front-runner in the competition as it has many supporters in the Royal Canadian Air Force. Many of Canada's allies plan to operate the plane. Canada is a partner in the F-35 program and has contributed funding for the aircraft's development. https://ottawacitizen.com/news/national/defence-watch/unlike-finland-canada-nixes-cold-weather-tests-fly-off-among-competing-fighter-jets

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