21 octobre 2018 | International, Aérospatial, Naval, Terrestre, C4ISR, Sécurité

Contract Awards by US Department of Defense - October 19, 2018

AIR FORCE

Raytheon Missile Systems, Tucson, Arizona, has been awarded a $62,016,768 cost-plus-incentive-fee option (P00012) to contract FA8675-16-C-0044 for the Advanced Medium Range Air to Air Missile (AMRAAM) program. This modification provides for the exercise of options for Phase 5 activities and foreign military sales (FMS) drawings for the form, fit and function refresh of the AMRAAM guidance section. Work will be performed in Tucson, Arizona, and is expected to be completed by Dec. 21, 2020. This contract involves FMS to Norway, Turkey, Japan, Romania, and Australia. FMS funds in the amount of $6,072,542 are being obligated at the time of award. Air Force Life Cycle Management Center, Eglin Air Force Base, Florida, is the contracting activity.

Ball Aerospace & Technologies Corp., Boulder, Colorado, has been awarded a ceiling $36,043,319 cost-reimbursement type contract for Solid State Laser Effects and Modeling. This contract provides for developing innovative diagnostics/test methods, increasing fidelity, realism and confidence of predictive models, measuring and consolidating laser vulnerability data, and working synergistically with tri-service for high energy laser system research. Work will be performed at Kirtland Air Force Base, New Mexico, and is expected to be completed by Oct. 24, 2022. This contract award is the result of a competitive acquisition and one offer was received. Fiscal 2018 research, development, test and evaluation funds in the amount of $100,000 will be obligated at the time of award. Air Force Research Laboratory, Kirtland AFB, New Mexico, is the contracting activity (FA9451-19-C-0001).

Infinity Systems Engineering LLC, Colorado Springs, Colorado, has been awarded a $22,653,934 firm-fixed-price contract for Global Positioning Systems Engineering, Analysis & Remote Site Sustainment II. The contract provides organizational maintenance and operational support services to the operational unit that will include remote site technicians, network administrative officers and operations support. Work will be performed in Colorado Springs, Colorado, and is expected to be completed by Dec. 31, 2025. This award is the result of a competitive acquisition and three offers were received. Fiscal 2019 operations and maintenance funds in the amount of $2,565,094 are being obligated at the time of award. Space and Missile Systems Center, Peterson Air Force Base, Colorado, is the contracting activity (FA8823‐19‐C‐0001).

Advanced Electronics Co., Riyadh, Kingdom of Saudi Arabia, has been awarded a $9,437,259 modification (FA8505-11-D-0002-0006-12) to contract FA8505-11-D-0002 for the Royal Saudi Air Force Electronic System Test Set. The contract modification incorporates a 15-month extension in order to allow for the completion of the Royal Saudi Air Force Electronic System Test Sets configuration upgrade. Work will be performed Huntsville, Alabama and in the Kingdom of Saudi Arabia. It is expected to be completed by Dec. 28, 2019. This modification involves foreign military sales for the Kingdom of Saudi Arabia. Foreign military sales funds in the amount of 9,437,259 are being obligated at the time of award. Total cumulative face value of the contract is $28,518,831. Air Force Life Cycle Management Center, Robins Air Force Base, Georgia, is the contracting activity.

Honeywell International Inc. Aerospace, Albuquerque, New Mexico, has been awarded a $7,838,175 firm-fixed-priced order, for the repair and upgrade of the C-5M Super Galaxy's Versatile Integrated Avionics/Avionics Integrated Units (VIA/AIU). This order provides for the repair and upgrade of 85 of the existing 903 and 904 configuration VIA/AIUs to the 905 configuration. The C-5M VIA/AIU repair and upgrade effort is a key component to the overall Core Mission Computer/Weather Radar aircraft modification/installation kit. Work will be performed in Albuquerque, New Mexico, and is expected to be completed by June 14, 2020. This award is the result of a sole-source acquisition. Fiscal 2017 aircraft procurement funds in the amount of $7,146,972; and fiscal 2018 aircraft procurement funds in the amount of $691,203 are being obligated at the time of award. Air Force Life Cycle Management Center, Wright-Patterson Air Force Base, Ohio, is the contracting (FA8625-18-F-6801).

DEFENSE LOGISTICS AGENCY

Rocky Brands Inc., Nelsonville, Ohio, has been awarded a maximum $20,566,240 modification (P00005) exercising the second one-year-option period of one-year base contract SPE1C1-17-D-1004 with four one-year option periods for hot-weather combat boots. This is a firm-fixed-price, indefinite-delivery/indefinite-quantity contract. Locations of performance are Ohio and Puerto Rico, with an Oct. 20, 2019, performance completion date. Using military service is Army. Type of appropriation is fiscal 2019 defense working capital funds. The contracting activity is the Defense Logistics Agency Troop Support, Philadelphia, Pennsylvania.

ARMY

Science Applications International Corp., Reston, Virginia, was awarded a $13,567,362 firm-fixed-price contract for life cycle management of programs within multiple ammunition product lines. Bids were solicited via the internet with one received. Work locations and funding will be determined with each order, with an estimated completion date of Dec. 4, 2023. U.S. Army Contracting Command, New Jersey, is the contracting activity (W15QKN-19-D-0002).

Fabritex Inc.,* Hartwell, Georgia, was awarded a $9,257,500 firm-fixed-price contract for non-corrosive 16-block wire mesh for the manufacture and assembly of articulated concrete mattress squares. Bids were solicited via the internet with one received. Work will be performed in Hartwell, Georgia, with an estimated completion date of Oct. 18, 2023. Fiscal 2019 operations and maintenance Army funds in the amount of $9,257,500 were obligated at the time of the award. U.S. Army Corps of Engineers, Memphis, Tennessee, is the contracting activity (W912EQ-19-C-0001).

*Small Business

https://dod.defense.gov/News/Contracts/Contract-View/Article/1667326/source/GovDelivery/

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    26 novembre 2020 | International, C4ISR

    Could soldiers silently communicate using brain signals in the future?

    Andrew Eversden WASHINGTON — A breakthrough in decoding brain signals could be the first step toward a future where soldiers silently communicate during operations. New research funded by the U.S. Army Research Office successfully separated brain signals that influence action or behavior from signals that do not. Using an algorithm and complex mathematics, the team was able to identify which brain signals were directing motion, or behavior-relevant signals, and then remove those signals from the other brain signals — behavior-irrelevant ones. “Here we're not only measuring signals, but we're interpreting them,” said Hamid Krim, a program manager for the Army Research Office. The service wants to get to the point where the machine can provide feedback to soldier's brains to allow them to take corrective action before something takes place, a capability that could protect the health of a war fighter. Krim pointed to stress and fatigue signals that the brain gives out before someone actually realizes they are stressed or tired, thus letting troops know when they should take a break. The only limit to the possibilities is the imagination, he said. Another potential future use is silent communication, Krim said. Researchers could build on the research to allow the brain and computers to communicate so soldiers can silently talk via a computer in the field. “In a theater, you can have two people talking to each other without ... even whispering a word,” Krim said. “So you and I are out there in the theater and we have to ... talk about something that we're confronting. I basically talked to my computer — your computer can be in your pocket, it can be your mobile phone or whatever — and that computer talks to ... your teammate's computer. And then his or her computer is going to talk to your teammate.” In the experiment, the researchers monitored the brain signals from a monkey reaching for a ball over and over again in order to separate brain signals. But more work is to be done, as any sort of battle-ready machine-human interface using brain signals is likely decades away, Krim said. What's next? Researchers will now try to identify other signals outside of motion signals. “You can read anything you want; doesn't mean that you understand it,” Krim said. “The next step after that is to be able to understand it. The next step after that is to break it down into into words so that ... you can synthesize in a sense, like you learn your vocabulary and your alphabet, then you are able to compose. “At the end of the day, that is the original intent mainly: to have the computer actually being in a full duplex communication mode with the brain.” The Army Research Office-backed program was led by researchers at the University of Southern California, with additional U.S. partners at the University of California, Los Angeles; the University of California, Berkeley; Duke University; and New York University. The program also involved several universities in the United Kingdom, including Essex, Oxford and Imperial College. The Army is providing up to $6.25 million in funding over five years. https://www.c4isrnet.com/battlefield-tech/it-networks/2020/11/25/could-soldiers-silently-communicate-using-brain-signals-in-the-future/

  • Department of Defense Selected Acquisition Reports (SARs) - December 2018

    2 août 2019 | International, Aérospatial, Naval, Terrestre, C4ISR, Sécurité

    Department of Defense Selected Acquisition Reports (SARs) - December 2018

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  • USAF Slashes Helo Training Time With Virtual Reality

    17 octobre 2019 | International, Aérospatial

    USAF Slashes Helo Training Time With Virtual Reality

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