Darpa ai colloquium
Author: n | 2025-04-24
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DARPA AI Colloquium - sa-meetings.com
And automation throughout military systems. Adversary nation-states responded by exploiting these networks, and it was during this period that the notion of an “electronic Pearl Harbor” entered the public consciousness5 and the status of cyberspace ascended to that of a domain of active conflict alongside the traditional domains of sea, land, air, and space. The connected nature of cyberspace enables an adversary to strike at any geographic location in the United States, and at a wide range of targets, including the power grid, refineries, chemical plants, airline reservation systems, enterprise and wide area networks, the financial markets, the bulk power markets, communications systems, natural gas pipelines, and water and wastewater utilities.Affecting the Cyber PresentDuring the 2000s, DARPA funded selected efforts in cybersecurity. In 2010, DARPA centralized cyber R&D within a new office – the Information Innovation Office (I2O). The creation of I2O included the hiring of several well-known computer science and cyber experts from academia and industry, and greatly expanded DARPA’s cyber program portfolio and investment. To stimulate the interest and involvement of the cyber community, DARPA hosted, on Nov. 7, 2011, a Cyber Colloquium that was attended by approximately 700 researchers, operators, and other stakeholders from industry, academia, and government6,7. The DARPA Cyber Colloquium was a bright signal to the broad U.S. cyber R&D community that DARPA would bring its unique project-centric approach to the development of future cyber capabilities, both defensive and offensive.In the seven years since the colloquium, DARPA’s programs have had great impact8. Recognizing that cyber threats to physical systems such as vehicles could be devastating for the military, DARPA in 2012 created the High-Assurance Cyber Military Systems (HACMS) program to secure embedded computing systems in mission-critical commercial and military assets against cyber attacks. DARPA’s work in this threat space resulted in heightened awareness of the need for improved automobile cybersecurity9 and led to changes throughout the industry. DARPA’s technical approach to secure software featured formal methods (based on mathematical techniques) to ensure that software reliably does what it is specified to do, and nothing else. DARPA demonstrated these formal methods by developing a secure mission system for an autonomous helicopter. The agency now is working with the DOD to transition tools for building software with much greater cyber resiliency, and envisions a day when formal methods and other advanced tools for creating provably secure software will be adopted by the defense procurement process.
Sneaking a Peek at DARPA's AI Colloquium
Portion of the electromagnetic spectrum with increased range and effectiveness.” DARPA is requesting $4 million to start the VAMPS effort in FY24.Archie: Under the Archie program, DARPA “seeks to develop techniques to characterize the electromagnetic spectrum to enhance radio frequency (RF) situational awareness, maneuverability, and countermeasures in Anti-Access/Area Denial (A2/AD) environments.” The program will leverage distributed communications technologies developed under DARPA’s earlier Resilient Networked Distributed Mosaic Communications (RN DMC) program “to enhance distributed electromagnetic warfare (EW) capabilities making them more robust and effective. Current radar and EW systems face the challenge of operating in a more congested and contested RF environment. At present, traditional EW systems do not have the capability to characterize this environment, leading to performance degradation. Archie will overcome this by characterizing the electromagnetic spectrum and determining the optimal means by which to deploy radar and EW capabilities.” DARPA is seeking $12.5 million in FY24 to “identify and develop the RF architecture for massive RF characterization” and “initiate technique development and testing.”PAIR: DARPA’s Predictive Antijam Artificial Intelligence Receivers (PAIR) program looks to “develop a next-generation artificial intelligence (AI)-enabled antijam receiver, to enable reliable communications links in a fully congested spectrum.” The program will leverage “advances in predictive AI-controlled filters and analog-to-digital converters, as well as neural network digital signal processing producing low latency real-time feedback to the receiver components.” Ultimately, the PAIR program will “enable new capabilities in tactical and long-range radio frequency (RF) communication systems, addressing future military needs for assured, on-demand, antijam information delivery, in environments where today communication would be impossible.” In FY24, the program will begin with a system-level study of AI-based receiver requirements, followed by development of “individual AI-enabled receiver components, including analog filters, analog-to-digital converters, and neural network digital signal processors meeting the derived system study requirements.” The FY24 funding request is $6.5 million.US NAVY FY24 BUDGET REQUEST FUNDS SCALED SHIPBORNE EA, NGJ UPGRADESThe US Navy is pursuing two new initiatives in FY24. It wants to begin developing a scaled shipborne electronic attack (EA) system for integration in warships too small to receive the AN/SLQ-32(V)7 suite. And for its Airborne ElectronicDARPA AI Colloquium - events.sa-meetings.com
For another. An investing question that is hard for me else might be easy for someone else. This is the not-so-hidden value of a mastermind group — the group can come together to more easily solve an individual’s problems.Just be prepared to solve someone else’s problem when it’s your turn.If they can’t answer a question, they know who can.In those rare instances where we are truly stumped by something, there’s almost always a lead on how to go forward anyway. In the face of a seemingly unanswerable question, someone usually knows a relevant expert outside the group. When we’re in the ballpark of a solution but not quite there, someone half-remembers a key piece of information they read last year and finds it again.Membership here is about working together to make artificial intelligence practical and realistic. We share resources, information, and contacts in pursuit of that goal. Global Mind isn’t a standalone network, but a network of networks. Each member brings their skills and knowledge to the table to make AI mainstream and practical. We enjoy access to the experts they know, the books they read, and the questions they want answered.Investors starve for this level and abundance of expertise. I probably have enough knowledge on my own to be a decent AI investor, but I’d rather be excellent. That’s why I turn to my mastermind group when I’m puzzled by a potential investment. I know I’ll have better results querying a team instead of relying solely on myself.There’s nothing artificial about that kind of intelligence.Alex Bates is the managing director of Neocortex Ventures, an angel investor, and a Member of Peter Diamandis’s Abundance 360 Network. He’s experienced in anything from leading DARPA funded research in neural networks, to applying analytics for the world’s largest data warehouses at Teradata, to. Download DARPA AI Colloquium latest version for Android free. DARPA AI Colloquium latestDARPA announces AI Next colloquium
By November 28, 2022 0 Comments On November 21, the Defense Advanced Research Projects Agency (DARPA) posted a request for proposals for AI Reinforcements (AIR). Abstracts are due by 3:00 p.m. Eastern on December 12.DARPA seeks innovative proposals for the development of dominant tactical autonomy for multi-ship, beyond visual range air combat missions. Autonomy solutions will initially be developed and demonstrated on human-on-the-loop F-16 testbeds and then transferred to an uncrewed combat aerial vehicle. The Artificial Intelligence Reinforcements (AIR) program will create a dominant Artificial Intelligence (AI) air combat capability compatible with existing sensors, electronic warfare, and weapons within dynamic and operationally representative environments. AIR will also develop the processes needed to rapidly design, test, and deliver future iterations of AIR software products.DARPA anticipates that successful performer teams will have recent, relevant, and significant experience and expertise in aerial AI system design and development with a proven record in algorithmic design, aircraft sensors, electronic warfare, and tactical combat operations. Successful performers must also have the ability to work in classified environments up to the TS//SAR level.Proposed research should investigate innovative approaches that enable revolutionary advances in science, devices, and/or systems. Specifically excluded is research that primarily results in evolutionary improvements to the existing state of practice.Multiple awards are anticipated for each Technical Area (TA) totaling approximately six (6) performers in Phase 1, and up to four (4) performers in Phase 2.Review the full AIR call for proposals.Source: SAMThe right opportunity can be worth millions. Don’t miss out on the latest IC-focused RFI, BAA, industry day, and RFP information – subscribe to IC News today.DARPA AI Colloquium on Windows Pc
Dr. Mark Chen accepts faculty position at Harvard PsychologyEHPLab is excited to announce that post-doc Mark Chen has accepted a faculty position in the department of psychology at Harvard University. Dr. Chen is a current Susan Nolan-Hoeksema Postdoctoral Associate at Yale. Professor Mendes featured in NPREHPLab PI, Professor Mendes, discusses the distinctions between adaptive and maladaptive acute stress with NPR. New Article in PNAS examining how childhood adversity influences somatic symptoms in adulthood. EHPLab Moves East! The Emotion, Health, and Psychophysiology Lab will be moving to the Department of Psychology at Yale University in Summer 2023. EHPLab (led by Post-doc David Newman) published a paper in Emotion showing high levels of gratitude and optimism are both related to lower blood pressure and better health behaviors.Click HERE for news article link Dr. Michael Trujillo receives “Young Investigator Colloquium Scholar” award from American Psychosomatic Society"This selective program is open to young investigators who desire a research-focused experience, and will take place in Long Beach, CA, in conjunction with the 2020 APS Annual Meeting. Colloquium scholars will receive complimentary meeting registration for two consecutive years and a travel stipend.The purpose of this half-day Colloquium is to bring together the expertise of senior mentors paired with postgraduate “rising star” trainees (i.e., physician fellows, residents, and postdoctoral fellows). The selected trainees will be paired with a mentor that share similar interests. The goal of the Colloquium is to contribute to the academic success of each participant." Check out this article on wearables and health research in Nature Medicine.“Samsung partially funds a blood-pressure study called My BP Lab at the University of California San Francisco. . . . Wendy Berry Mendes, a psychiatrist leading the study, estimates that 100,000 people have participated since it launched in March 2018.” The Emotion, Health, and Psychophysiology Lab announces collaboration with Samsung and Sage Bionetworks on a new app based study that will monitor stress, emotion, and blood pressure levels in daily lives. The study harnesses new technology—an optic sensor in Samsung’s Galaxy S9—and an app “My BP Lab” developed by Sage Bionetworks.To learn more about our study, visit MyBPLab.com or download the app here: Photos from the Samsung Unpack Event; Press Release February 25, 2018 Kareena, Aric, and Wendy are interviewed about an exciting new project that measures stress and physiologic responses in people’s daily lives. January 18, 2018DARPA AI Colloquium Week - roboticsthroughsciencefiction.com
Much of modern life takes place online in cyberspace. A variety of threats have emerged to imperil the future of the cyber domain, where more and more of our commercial and social activity unfolds. Securing cyberspace has become a priority at the highest levels of government, including the White House. DARPA is at the leading edge of our nation’s pursuit of a beneficent cyber future.Legacy of Cyber PastRoughly a half-century ago, DARPA (when it was known as the Advanced Research Projects Agency, or ARPA) program managers conceived, implemented, and demonstrated the ARPANET, the proof-of-concept precursor of the internet. The principal advance of the ARPANET resided in the introduction of packet-switched communications to achieve a dramatic advance in the efficiency by which the information packets wound their way through available wires and other inter-computer linkages. By 1977, the ARPANET had grown into a national network connecting university, commercial, and government research activities.The initial engineering of the ARPANET focused on providing basic communication services, and accountability was not included as a primary design goal. These design choices were intentional. According to an historical account of the original network protocols developed at ARPA, “… since this network was designed to operate in a military context … survivability was put as a first goal and accountability as a last goal … An architecture primarily for commercial deployment would clearly place these goals at the opposite end of the list.” Instead of building in reliable attribution mechanisms, user behavior was loosely governed by rules and norms. For example, at the MIT AI Lab circa 19821, it was simply decreed that “It is considered illegal to use the ARPANET for anything which is not in direct support of government business.” The critical need for stronger security and control mechanisms was not yet apparent.Capt. James McColl and Capt. Justin Lanahan, both cyber officers at U.S. Army Cyber Command, took part in a weeklong “hackathon” in Arlington, Virginia, in July 2015, in support of the continued development of Plan X. Photo by Bill RocheDuring the 1980s, a commercial version of the ARPANET, dubbed the internet, grew rapidly, and by 1988 served roughly 60,000 internet-connected computers (“hosts”)2. Nov. 2, 1988, was an important reality-check day in the history of the internet, with the release and rapid spread of the Morris worm to approximately 10 percent of internet hosts3. It was a before-and-after moment. After the Morris worm, users became aware of the need for stronger security in computers and networks.After the Morris worm, users became aware of the need for stronger security in computers and networks.During the 1990s, the Department of Defense (DOD) recognized networking as a critical enabler for military operations4. As such, DOD aggressively integrated networking, computation,. Download DARPA AI Colloquium latest version for Android free. DARPA AI Colloquium latestComments
And automation throughout military systems. Adversary nation-states responded by exploiting these networks, and it was during this period that the notion of an “electronic Pearl Harbor” entered the public consciousness5 and the status of cyberspace ascended to that of a domain of active conflict alongside the traditional domains of sea, land, air, and space. The connected nature of cyberspace enables an adversary to strike at any geographic location in the United States, and at a wide range of targets, including the power grid, refineries, chemical plants, airline reservation systems, enterprise and wide area networks, the financial markets, the bulk power markets, communications systems, natural gas pipelines, and water and wastewater utilities.Affecting the Cyber PresentDuring the 2000s, DARPA funded selected efforts in cybersecurity. In 2010, DARPA centralized cyber R&D within a new office – the Information Innovation Office (I2O). The creation of I2O included the hiring of several well-known computer science and cyber experts from academia and industry, and greatly expanded DARPA’s cyber program portfolio and investment. To stimulate the interest and involvement of the cyber community, DARPA hosted, on Nov. 7, 2011, a Cyber Colloquium that was attended by approximately 700 researchers, operators, and other stakeholders from industry, academia, and government6,7. The DARPA Cyber Colloquium was a bright signal to the broad U.S. cyber R&D community that DARPA would bring its unique project-centric approach to the development of future cyber capabilities, both defensive and offensive.In the seven years since the colloquium, DARPA’s programs have had great impact8. Recognizing that cyber threats to physical systems such as vehicles could be devastating for the military, DARPA in 2012 created the High-Assurance Cyber Military Systems (HACMS) program to secure embedded computing systems in mission-critical commercial and military assets against cyber attacks. DARPA’s work in this threat space resulted in heightened awareness of the need for improved automobile cybersecurity9 and led to changes throughout the industry. DARPA’s technical approach to secure software featured formal methods (based on mathematical techniques) to ensure that software reliably does what it is specified to do, and nothing else. DARPA demonstrated these formal methods by developing a secure mission system for an autonomous helicopter. The agency now is working with the DOD to transition tools for building software with much greater cyber resiliency, and envisions a day when formal methods and other advanced tools for creating provably secure software will be adopted by the defense procurement process.
2025-04-13Portion of the electromagnetic spectrum with increased range and effectiveness.” DARPA is requesting $4 million to start the VAMPS effort in FY24.Archie: Under the Archie program, DARPA “seeks to develop techniques to characterize the electromagnetic spectrum to enhance radio frequency (RF) situational awareness, maneuverability, and countermeasures in Anti-Access/Area Denial (A2/AD) environments.” The program will leverage distributed communications technologies developed under DARPA’s earlier Resilient Networked Distributed Mosaic Communications (RN DMC) program “to enhance distributed electromagnetic warfare (EW) capabilities making them more robust and effective. Current radar and EW systems face the challenge of operating in a more congested and contested RF environment. At present, traditional EW systems do not have the capability to characterize this environment, leading to performance degradation. Archie will overcome this by characterizing the electromagnetic spectrum and determining the optimal means by which to deploy radar and EW capabilities.” DARPA is seeking $12.5 million in FY24 to “identify and develop the RF architecture for massive RF characterization” and “initiate technique development and testing.”PAIR: DARPA’s Predictive Antijam Artificial Intelligence Receivers (PAIR) program looks to “develop a next-generation artificial intelligence (AI)-enabled antijam receiver, to enable reliable communications links in a fully congested spectrum.” The program will leverage “advances in predictive AI-controlled filters and analog-to-digital converters, as well as neural network digital signal processing producing low latency real-time feedback to the receiver components.” Ultimately, the PAIR program will “enable new capabilities in tactical and long-range radio frequency (RF) communication systems, addressing future military needs for assured, on-demand, antijam information delivery, in environments where today communication would be impossible.” In FY24, the program will begin with a system-level study of AI-based receiver requirements, followed by development of “individual AI-enabled receiver components, including analog filters, analog-to-digital converters, and neural network digital signal processors meeting the derived system study requirements.” The FY24 funding request is $6.5 million.US NAVY FY24 BUDGET REQUEST FUNDS SCALED SHIPBORNE EA, NGJ UPGRADESThe US Navy is pursuing two new initiatives in FY24. It wants to begin developing a scaled shipborne electronic attack (EA) system for integration in warships too small to receive the AN/SLQ-32(V)7 suite. And for its Airborne Electronic
2025-04-08By November 28, 2022 0 Comments On November 21, the Defense Advanced Research Projects Agency (DARPA) posted a request for proposals for AI Reinforcements (AIR). Abstracts are due by 3:00 p.m. Eastern on December 12.DARPA seeks innovative proposals for the development of dominant tactical autonomy for multi-ship, beyond visual range air combat missions. Autonomy solutions will initially be developed and demonstrated on human-on-the-loop F-16 testbeds and then transferred to an uncrewed combat aerial vehicle. The Artificial Intelligence Reinforcements (AIR) program will create a dominant Artificial Intelligence (AI) air combat capability compatible with existing sensors, electronic warfare, and weapons within dynamic and operationally representative environments. AIR will also develop the processes needed to rapidly design, test, and deliver future iterations of AIR software products.DARPA anticipates that successful performer teams will have recent, relevant, and significant experience and expertise in aerial AI system design and development with a proven record in algorithmic design, aircraft sensors, electronic warfare, and tactical combat operations. Successful performers must also have the ability to work in classified environments up to the TS//SAR level.Proposed research should investigate innovative approaches that enable revolutionary advances in science, devices, and/or systems. Specifically excluded is research that primarily results in evolutionary improvements to the existing state of practice.Multiple awards are anticipated for each Technical Area (TA) totaling approximately six (6) performers in Phase 1, and up to four (4) performers in Phase 2.Review the full AIR call for proposals.Source: SAMThe right opportunity can be worth millions. Don’t miss out on the latest IC-focused RFI, BAA, industry day, and RFP information – subscribe to IC News today.
2025-04-24