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November 15, 2021 | International, Aerospace, Naval, Land, C4ISR, Security

Can you solve our new waste reduction challenge? / Pouvez-vous résoudre notre nouveau défi sur la réduction des déchets?

Cost and Waste Reduction of Tree Planting

Natural Resources Canada (NRCan) is seeking a solution that will develop novel processes, approaches and/or technologies, to reduce the cost of tree seedling production, packaging and transportation while also reducing the amount of waste including plastic waste currently generated.

Think you can solve our new waste reduction challenge? Compete for funding to prove your feasibility and develop a solution! This challenge closes December 21st, 2021 at 2pm EST!

Apply online

Réduction des coûts et des déchets dans la plantation d'arbres

Ressources naturelles Canada (RNCan) est à la recherche d'une solution qui permettra d'élaborer de nouveaux processus, approches et/ou technologies afin de réduire le coût de production, d'emballage et de transport des semis d'arbres tout en réduisant la quantité de déchets, notamment des déchets de plastique actuellement produits.

Vous pensez pouvoir résoudre notre nouveau défi sur la réduction des déchets ? Compétitionnez afin de prouver la faisabilité de votre solution et de la développer ! Ce défi se termine le 21 decembre, 2021 à 14h HNE.

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On the same subject

  • Singapore Airshow 2020: IAI takes aim at Singapore's next-gen UAV requirement with Heron MKII

    February 15, 2020 | International, Aerospace

    Singapore Airshow 2020: IAI takes aim at Singapore's next-gen UAV requirement with Heron MKII

    Israel Aerospace Industries (IAI) has taken the opportunity at Singapore Airshow 2020 to showcase its Heron MKII medium altitude long endurance unmanned aerial vehicle (MALE UAV) to the public for the first time, and has declared its intention to pitch the new air vehicle at a Singaporean requirement for next-generation UAVs. Moshe Levy, IAI's executive vice president and general manager of its Military Aircraft Group, told Jane's that the Heron MKII builds on the experience gained from developing the incumbent Heron 1 UAV and will offer improved performance via several airframe design and propulsion updates, although its general physical characteristics remain unchanged with an overall length and wingspan of 8.5 m and 16.6 m, respectively. Newly incorporated enhancements include a widened fuselage pod designed to accommodate a greater number of sensors and/or more powerful mission systems as well as a new propulsion configuration comprising the fully certified Rotax 915 iS 1,352 cc turbocharged four-stroke engine, which has a time before overhaul (TBO) rating of 1,200 hours. It also produces up to 135 hp at maximum continuous power and is coupled to a three-bladed variable-pitch pusher propeller. IAI claims that the new engine will provide the Heron MKII with a 50% improvement on the rate of climb over that of the Heron 1, as well as a 16.6% boost over the current maximum speed of 120 kt to 140 kt, although it retains a comparable loiter speed profile of between 60 and 80 kt. The new air vehicle's maximum take-off weight (MTOW) has also increased to 1,350 kg with a corresponding uptick in payload capacity to 470 kg. In contrast, the Heron 1 has a MTOW of about 1,200 kg and is powered by a 1,211 cc four-stroke Rotax 914 F engine that can develop up to 100 hp at maximum continuous power, which in turn drives a two-bladed pusher propeller. https://www.janes.com/article/94282/singapore-airshow-2020-iai-takes-aim-at-singapore-s-next-gen-uav-requirement-with-heron-mkii?from_rss=1

  • Cinq candidats évalués jusqu’à fin juin

    May 1, 2019 | International, Aerospace

    Cinq candidats évalués jusqu’à fin juin

    Par Sébastien Galliker Avions de combatEurofighter, F/A-18 Super Hornet, Rafale, F-35A et Gripen E sont testés par Armasuisse sur la base de Payerne. Cinq avions de combat sont en lice pour remplacer les Tiger et les F/A-18 de l'armée suisse. Quatre jours de tests sont prévus pour chacun, selon l'ordre alphabétique. L'Eurofighter d'Airbus était le premier sur la sellette, dès le 11 avril. La phase de sélection du F/A-18 Super Hornet de Boeing a débuté le 29 avril. Le Rafale de Dassault suivra dès le 20 mai, puis le F-35A de Lockheed-Martin le 6 juin et enfin le Gripen E de Saab à partir du 24 juin. Pour chaque avion, Armasuisse a prévu un après-midi aux spotters et autres citoyens intéressés pour approcher l'avion respectif à l'intérieur de l'aérodrome militaire. Les places sont toutefois limitées et l'attrait du public et surtout des photographes est grand. «C'est un peu comme le Paléo pour s'inscrire, il faut être connecté au moment où les places sont ouvertes», commente un spotter. Armasuisse précise aussi sur son site qu'«il ne s'agit pas d'un meeting aérien. Aucune manœuvre supplémentaire, des loopings par exemple, ne sera présentée.» Les essais incluent huit missions comportant des t'ches spécifiques. Effectuées par un ou deux avions de combat, parfois en en solo par un pilote étranger pour le F-35A et le Gripen E qui sont des monoplaces et sinon en présence d'un ingénieur helvétique, ces missions consisteront en 17 décollages et atterrissages. Elles seront axées sur les aspects opérationnels, les aspects techniques et les caractéristiques particulières. «L'objectif n'est pas de sélectionner le meilleur avion, mais le meilleur pour la Suisse», avait présenté Christian Catrina, délégué du Conseil fédéral pour ce dossier, lors de sa présentation. La taille de la future flotte n'est pas encore déterminée, même si les prévisions oscillent entre 30 et 40 avions de combat. Le Conseil fédéral fera son choix à fin 2020, début 2021 et la facture totale sera de l'ordre de 8 milliards de francs, y compris la défense sol-air. La population suisse se prononcera sur cette acquisition, mais pourrait ne voter que sur l'achat des avions, pour un montant estimé de 6 milliards de francs. (24 heures) https://www.24heures.ch/news/news/cinq-candidats-evalues-jusqu-fin-juin/story/30895634

  • JUST IN: New Navy Lab to Accelerate Autonomy, Robotics Programs

    September 9, 2020 | International, Naval

    JUST IN: New Navy Lab to Accelerate Autonomy, Robotics Programs

    9/8/2020 By Yasmin Tadjdeh Over the past few years, the Navy has been hard at work building a new family of unmanned surface and underwater vehicles through a variety of prototyping efforts. It is now standing up an integration lab to enable the platforms with increased autonomy, officials said Sept. 8. The Rapid Integration Autonomy Lab, or RAIL, is envisioned as a place where the Navy can bring in and test new autonomous capabilities for its robotic vehicles, said Capt. Pete Small, program manager for unmanned maritime systems. “Our Rapid Autonomy Integration Lab concept is really the playground where all the autonomy capabilities and sensors and payloads come together, both to be integrated ... [and] to test them from a cybersecurity perspective and test them from an effectiveness perspective,” Small said during the Association for Unmanned Vehicle Systems International's Unmanned Systems conference, which was held virtually due to the ongoing COVID-19 crisis. Robotics technology is moving at a rapid pace, and platforms will need to have their software and hardware components replaced throughout their lifecycles, he said. In order to facilitate these upgrades, the service will need to integrate the new autonomy software that comes with various payloads and certain autonomy mission capabilities with the existing nuts-and-bolts packages already in the unmanned platforms. “The Rapid Autonomy Integration Lab is where we bring together the platform software, the payload software, the mission software and test them,” he explained. During testing, the service will be able to validate the integration of the software as well as predict the performance of the unmanned vehicles in a way that “we're sure that this is going to work out and give us the capability we want,” Small said. The RAIL concept will rely on modeling-and-simulation technology with software-in-the-loop testing to validate the integration of various autonomous behaviors, sensors and payloads, he said. “We will rely heavily on industry to bring those tools to the RAIL to do the testing that we require,” he noted. However, the lab is not envisioned as a single, brick-and-mortar facility, but rather a network of cloud-based infrastructure and modern software tools. “There will be a certain footprint of the actual software developers who are doing that integration, but we don't see this as a big bricks-and-mortar effort. It's really more of a collaborative effort of a number of people in this space to go make this happen," Small said. The service has kicked off a prototype effort as part of the RAIL initiative where it will take what it calls a “third-party autonomy behavior” that has been developed by the Office of Naval Research and integrate it onto an existing unmanned underwater vehicle that runs on industry-made proprietary software, Small said. Should that go as planned, the Navy plans to apply the concept to numerous programs. For now, the RAIL is a prototyping effort, Small said. “We're still working on developing the budget profile and ... the details behind it,” he said. “We're working on building the programmatic efforts behind it that really are in [fiscal year] '22 and later.” The RAIL is part of a series of “enablers” that will help the sea service get after new unmanned technology, Small said. Others include a concept known as the unmanned maritime autonomy architecture, or UMAA, a common control system and a new data strategy. Cmdr. Jeremiah Anderson, deputy program manager for unmanned underwater vehicles, said an upcoming industry day on Sept. 24 that is focused on UMAA will also feature information about the RAIL. “Half of that day's agenda will really be to get into more of the nuts and bolts about the RAIL itself and about that prototyping effort that's happening this year,” he said. “This is very early in the overall trajectory for the RAIL, but I think this will be a good opportunity to kind of get that message out a little bit more broadly to the stakeholders and answer their questions.” Meanwhile, Small noted that the Navy is making strides within its unmanned portfolio, citing a “tremendous amount of progress that we've made across the board with our entire family of UVS and USVs.” Rear Adm. Casey Moton, program executive officer for unmanned and small combatants, highlighted efforts with the Ghost Fleet Overlord and Sea Hunter platforms, which are unmanned surface vessels. The Navy — working in cooperation with the office of the secretary of defense and the Strategic Capabilities Office — has two Overlord prototypes. Fiscal year 2021, which begins Oct. 1, will be a particularly important period for the platforms, he said. “Our two Overlord vessels have executed a range of autonomous transits and development vignettes,” he said. “We have integrated autonomy software automation systems and perception systems and tested them in increasingly complex increments and vignettes since 2018.” Testing so far has shown the platforms have the ability to perform safe, autonomous navigation in according with the Convention on the International Regulations for Preventing Collisions at Sea, or COLREGS, at varying speeds and sea states, he said. “We are pushing the duration of transits increasingly longer, and we will soon be working up to 30 days,” he said. “Multi-day autonomous transits have occurred in low- and high-traffic density environments.” The vessels have already had interactions with commercial fishing fleets, cargo vessels and recreational craft, he said. The longest transit to date includes a round trip from the Gulf Coast to the East Coast where it conducted more than 181 hours and over 3,193 nautical miles of COLREGS-compliant, autonomous operation, Moton added. Both Overload vessels are slated to conduct extensive testing and experimentation in fiscal year 2021, he said. “These tests will include increasingly long-range transits with more complex autonomous behaviors,” he said. "They will continue to demonstrate automation functions of the machinery control systems, plus health monitoring by a remote supervisory operation center with the expectation of continued USV reliability." The Sea Hunter will also be undergoing numerous fleet exercises and tactical training events in fiscal year 2021. “With the Sea Hunter and the Overlord USVs we will exercise ... control of multiple USVs, test command-and-control, perform as part of surface action groups and train Navy sailors on these platforms, all while developing and refining the fleet-led concept of operations and concept of employment,” Moton said. https://www.nationaldefensemagazine.org/articles/2020/9/8/navy-testing-new-autonomy-integration-lab

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