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July 29, 2022 | International, Clean technologies, Big data and Artifical Intelligence, Advanced manufacturing 4.0, Autonomous systems (Drones / E-VTOL), Virtual design and testing, Additive manufacturing

Tech:NYC Innovation Indicators - Representing New York City’s Technology Industry

A Report By Center For An Urban Future & Tech:NYC - New York’s New Jobs Engine. Tech Is Powering the City’s Economic Recovery and Producing the Lion’s Share of New Well-Paying Jobs

https://indicators.technyc.org/

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  • BIND 4.0 | Call for proposal

    July 20, 2022

    BIND 4.0 | Call for proposal

    The BIND 4.0 International Open Call for Startups to apply for the chance to put innovation into action with paid contracts with industry leaders, is now active and accepting applications! Who do we Work With? Young companies worldwide developing solutions that can be applied to the Intelligent Industry, Clean Energy & Sustainability, Health Tech and/or Food Tech sectors for our 65+ Corporate Partners based in the Basque Country, Spain. The technologies of interest are wide ranging and not limited to: AI, Cybersecurity, Big Data Analytics, IOT/IIOT, Smart Energy, AR/VR, Machine or Artificial Vision, Collaborative Robotics, Additive Manufacturing, Biobased Solutions, Clean Tech, New Materials, NanoTech, Medical Devices, Smart Sensors, etc. Why BIND 4.0 Open Innovation & Acceleration Program? It is a government sponsored initiative with 6 years of proven track record accelerating over 160 International Startups and catalyzing countless business opportunities. 45K Average Contract Amount 65+ Big Name Reference Clients High Impact Acceleration, Mentoring & Support Zero Equity Taken & No Fee to Participate Please Share our International Startup Open Call. If you'd like us to prepare something targeted to your newsletter or startup portfolio please let us know. Easily share our latest social media posts and upcoming Webinar events via the links below. Key Details and links: Startup Open Call, Accepting Applications Deadline Sep 8, 2022 BIND 4.0 Webinar Presentation with Alumni July 28, 2022 BIND 4.0 Webinar Presentation with Alumni Aug 30, 2022 BIND 4.0 2022 Program Catalogue 2022 Catalogue BIND 4.0 Website For More Resources www.BIND40.com HTML Email Open Call Announcement Link to Email Message LinkedIn Open Call Post BIND 4.0 2022 Open Call Twitter Open Call Publication BIND 4.0 2022 Open Call We Value Collaborative Partnerships. Remember, for our Collaborative Partners with relevant topics and programs, we offer event promotion via our alumni newsletter or social media, targeted startup referrals, plus networking via invitations to innovation events. Have Any Startup Recommendations? Send us a quick email with any Startups that you think could be a good fit for our immersion, acceleration and open innovation program. Send their contact info so we can reach out to them directly and fast track their application based on your referral. Startups can set up a 1:1 Meeting with us, or if you'd rather send them this Link to Apply, the application deadline is September 8th.

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

    September 9, 2020

    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

  • USAF base to use robotic technology to remove paint from A-10 aircraft

    January 21, 2020

    USAF base to use robotic technology to remove paint from A-10 aircraft

    SHARE Corrosion control technicians with the 576th Aircraft Maintenance Squadron monitor two media blast robots as they strip paint off the first production A-10 aircraft. Credit: USAF / Todd Cromar. The 576th Aircraft Maintenance Squadron is leveraging the robotic media blasting technology for the first time to remove paint from the A-10 aircraft at Hill Air Force Base (AFB) in the US. With the use of the new robotic technology, the squadron is expanding its capacity by adding capability. New-generation robots are used to strip paint from A-10 Thunderbolt II aircraft that arrive at Hill AFB for depot overhaul and maintenance. The latest process is expected to reduce man-hours and increase safety by removing employees from the blasting atmosphere, resulting in time and costs savings. 576th Aircraft Maintenance Squadron director Tim Randolph said: “There are going to be across-the-board improvements, including a dramatic reduction in exposure to a Hexavalent Chromium dust environment. “Savings will also be seen with reduced operating time and less power consumption, as well as reduced costs in material. We really haven't found a downside to this system.” The new paint removal process is carried out by two robots, which each have four hose attachments that move independently along both sides of the aircraft. 576th Aircraft Maintenance Squadron Corrosion Control Flight chief James Gill said: “Compared to the manual paint stripping method, the robots use half the amount of blast media at half of the air pressure, while removing an extremely precise thickness, uniformly, across the entire aircraft surface. “This translates into a process that is less stressful on the aircraft skins and saves money in media cost, while creating only half the waste stream.” A new laser burn process is also being tested at the AFB on F-16 aircraft. The squadron expects the application of the process to the A-10s going forward. Combined together, the three processes are capable of reducing the total time an aircraft spends in depot maintenance. Last August, Boeing secured a potential $999m 11-year contract to deliver sustainment work on the USAF A-10 Thunderbolt II aircraft. https://www.airforce-technology.com/news/usaf-base-robotic-technology/

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