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October 23, 2024 | International, Land

Exercise Southern Tiger bolsters Australia-Malaysia ties

Australian and Malaysian military personnel have reinforced their partnership through Exercise Southern Tiger.

https://www.army-technology.com/news/exercise-southern-tiger-australia-malaysia/

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  • The Army is working to see across thousands of miles

    August 20, 2020 | International, Aerospace, Naval, Land, C4ISR

    The Army is working to see across thousands of miles

    Mark Pomerleau WASHINGTON — The Army's Intelligence, Surveillance and Reconnaissance Task Force is helping the service modernize its ability to see across huge ranges through a layered approach that includes ground, air and space. As geographic boundaries will be blurred in future conflict with sophisticated adversaries, the Army is interrogating how it traditionally does everything from imagery collection, signals intelligence and electronic warfare, hoping to transcend current methods and create a battlefield picture that extends across these geographic divisions. “If you look at how the [National Defense Strategy] describes what we're supposed to do in competition and conflict, we really needed to have the ability to see deep, to look deep to be able to shape the environment for commanders, [and] the ability to sense the environment,” Lt. Gen. Scott Berrier, the Army's director for ISR/G-2, told C4ISRNET in an Aug. 18 interview, adding that after the counterterrorism fight, he did not feel as though the Army's sensors and platforms were in a great place for great power competition. Berrier is departing his post in a few weeks to head the Defense Intelligence Agency, with Maj. Gen. Laura Potter set to pin on a third star and take over as the next G-2 and ISR task force. Under Berrier, the task force has focused on enhancing other Army missions, namely the service's number one modernization priority: long range precision fires. “We really see ourselves as enabling capability ... when you talk about long range precision fires and the sensor to shooter, if you're going to shoot a target at 1,000 miles, you certainly have to see it,” he said. The task force works to corral all the ongoing modernization efforts conducted by Army Futures Command and its various cross functional teams, along with the acquisition community, to ensure they are all coordinated for an integrated, modernized ISR footprint. This means helping to advise on and shape requirements for future systems, while contributing in exercises that test new capabilities and concepts with forces across the world. Other contributors include the Future Vertical Lift and Assured Position, Navigation and Timing teams. The Task Force is also examining to what extent cyber capabilities can play a role in deep sensing, though details are scarce on this front. The Army's Program Executive Office Intelligence, Electronic Warfare and Sensors is contributing through offensive cyber, which officials in the past have said cyber is a collection mechanism. A layered approach The Army's ISR modernization approach begins with the terrestrial or ground layer, Berrier said. The Intelligence Center of Excellence at Fort Huachuca is taking the lead in this arena. The main capability is the forthcoming Terrestrial Layer System-Large, the Army's first brigade-focused, integrated signals intelligence, electronic warfare and cyber platform. Berrier explained that the Army is trying to regain capability it lost after the Cold War. “What we need to have is a sensing platform that can really, really see in the electromagnetic spectrum very complicated signals; to be able to understand [and] perceive the environment; and then — if we want to make an effect inside that environment — [create an effect] with our electronic warfare operators but also ... put an effect into cyberspace,” he said. “We think TLS, with our [brigade combat teams] and those formations, will have what I would call close access, perhaps, to adversary networks. And they'd be able to influence those networks in a number of different ways, as you can imagine.” The Army awarded two prototypes for TLS — to Boeing subsidiary Digital Receiver Technology, Inc. and Lockheed Martin — for a roughly year long experiment with units, after which it will choose one vendor to move forward. There are significant changes for the Army in the aerial layer, namely a new, first-of-its-kind jet the Army is experimenting with. Intelligence and Security Command is heading the aerial layer for the Army currently and just deployed a commercial jet called the Airborne Reconnaissance and Targeting Multi-mission Intelligence System (ARTEMIS), made by Leidos and first reported by Aviation Week, to the Pacific. ARTEMIS is the first step in something the Army is calling the Multidomain Sensing System, which will operate at higher altitudes than the Army has traditionally operated. “Our sensors are flying between 22,000 and 24,000 feet today. We think they need to be much higher ... think in the 40,000 range,” Berrier said. He added there is an unmanned component that could potentially include gliders or balloons. However, he acknowledged the technology might not be ready yet. Ultimately, the Army believes it will need signals intelligence, electronic intelligence, electronic warfare and cyber capabilities in the final Multidomain Sensing System, whatever that ends up being. Berrier described a year long “campaign of learning” for the Multidomain Sensing System, which begins with ARTEMIS in the Pacific. “That will take about a year before I think we're ready to even make a decision. Do we stay sort of in this realm of assets that are around 20,000 feet or 22,000 feet? Or do we, should we go higher to be in that competition ISR fight?” he said, adding the Army will partner with other services on big wing ISR. Finally, the third layer is the space layer, which manifests itself in the Tactical Intelligence Targeting Access Node (TITAN). TITAN is a ground station the Army is building to replace several existing ground stations. Since the Army isn't in the business of building and launching its own satellites, it wants to take advantage of the bevy of satellites already in existence by agencies such as the National Reconnaissance Office. And it believes TITAN will allow it to access these constellations better. Berrier said there will be some processing and artificial intelligence that goes into the system, enabling it to identify targets sooner. The Army is experimenting with TITAN “surrogates” in Europe, through the 66th Military Intelligence Brigade, and in the Pacific through the 500th Military Intelligence Brigade. The Army is also using exercises such as Defender Europe and Defender Pacific along with newer units to include the Multidomain Task Force and its Intelligence, Information, Cyber, Electronic Warfare and Space battalion to help prove out these intelligence concepts and capabilities. It is also working to modernize data standards and dissemination systems such as the Distributed Common Ground System, which is transitioning to the Command Post Computing Environment. Ultimately, Berrier said these ISR modernization efforts are about helping the Army deter conflict. But if that fails, the service needs to be ready for the multidomain battlefield it expects to fight on in the future against near-peer powers. “If you do competition effectively and if you do competition ISR in the right way, you'll never get to conflict because you'll always have a decision or an information advantage over our adversaries,” he said. “If we do transition to conflict, it is about reducing the sensor-to-shooter loop that's going to be so key for multidomain operations. If you want to do MDO ... the ISR Task Force is about bringing multidomain intelligence to competition and conflict.” https://www.c4isrnet.com/battlefield-tech/2020/08/19/the-army-is-working-to-see-across-thousands-of-miles/

  • Contract Awards by US Department of Defense - January 12, 2021

    January 13, 2021 | International, Aerospace, Naval, Land, C4ISR, Security

    Contract Awards by US Department of Defense - January 12, 2021

    AIR FORCE The Boeing Co., Seattle, Washington, has been awarded a $1,687,359,008 modification (P00166) to contract FA8625-11-C-6600 for Lot Six production of KC-46 aircraft, subscriptions and licenses, and G081 flat file. The contract modification provides for the exercise of an option for an additional quantity of 12 KC-46 aircraft, data, subscriptions and licenses, and G081 flat file being produced under the basic contract. Work will be performed in Seattle, Washington, and is expected to be completed April 30, 2023. Fiscal 2020 aircraft procurement funds in the full amount are being obligated at the time of award. The Air Force Life Cycle Management Center, Wright-Patterson Air Force Base, Ohio, is the contracting activity. AchieveIt Online LLC, Atlanta, Georgia (FA8612-21-D-0101); Aerocine Ventures Inc., Jackson Heights, New York (FA8612-21-D-0102); Aerovation Inc., Tucson, Arizona (FA8612-21-D-0103); AI.Reverie Inc., New York, New York (FA8612-21-D-0104); All Vision Technologies Inc., New York, New York (FA8612-21-D-0105); Allied Associates International Inc., Gainesville, Virginia (FA8612-21-D-0106); Aptima Inc., Woburn, Massachusetts (FA8612-21-D-0108); A-Tech Corp., Albuquerque, New Mexico (FA8612-21-D-0109); BlackHorse Solutions Inc., Herndon, Virginia (FA8612-21-D-0110); Charles River Analytics Inc., Cambridge, Massachusetts (FA8612-21-D-0111); CIS Secure Computing Inc., Ashburn, Virginia (FA8612-21-D-0112); Cognitive Space Inc., Manvel, Texas (FA8612-21-D-0113); TeleCommunication Systems Inc., Annapolis, Maryland (FA8612-21-D-0114); Concept Solutions LLC, Reston, Virginia (FA8612-21-D-0115); Crunchy Data Solutions Inc., Charleston, South Carolina (FA8612-21-D-0116); CrowdAI Inc., Mountain View, California (FA8612-21-D-0117); Danbury Enterprises LLC, Arlington, Virginia (FA8612-21-D-0118); Data Machines Corp., Ashburn, Virginia (FA8612-21-D-0119); Defense Architecture Systems Inc., Fulton, Maryland (FA8612-21-D-0120); DTC Communications Inc., Herndon, Virginia (FA8612-21-D-0121); Forcepoint Federal LLC, Herndon, Virginia (FA8612-21-D-0122); Intelligent Waves LLC, Reston, Virginia (FA8612-21-D-0123); Iron Bow Technologies LLC, Herndon, Virginia (FA8612-21-D-0124); KeyW Corp., Hanover, Maryland (FA8612-21-D-0125); Modus Operandi Inc., Melbourne, Florida (FA8612-21-D-0126); Sentenai Inc., Boston, Massachusetts (FA8612-21-D-0128); The Stratagem Group Inc., Aurora, Colorado (FA8612-21-D-0129); Technergetics LLC, Utica, New York (FA8612-21-D-0130); Technica Corp, Sterling, Virginia (FA8612-21-D-0131); RAFT LLC, Reston, Virginia (FA8612-21-D-0132); Enveil Inc., Fulton, Maryland (FA8612-21-D-0133); Sherpa LLC, St. Louis, Missouri (FA8612-21-D-0134); KIHOMAC Inc., Reston, Virginia (FA8612-21-D-0135); Kinnami Software Corpo., Braintree, Massachusetts (FA8612-21-D-0136); KPMG LLP, McLean, Virginia (FA8621-21-D-0137); and Perspecta Labs Inc., Basking Ridge, New Jersey (FA8612-21-D-0138), have collectively been awarded a ceiling $950,000,000 indefinite-delivery/indefinite-quantity contract to compete for future efforts associated with the maturation, demonstration and proliferation of capability across platforms and domains, leveraging open systems design, modern software and algorithm development in order to enable Joint All Domain Command and Control (JADC2). These contracts provide for the development and operation of systems as a unified force across all domains (air, land, sea, space, cyber and electromagnetic spectrum) in an open architecture family of systems that enables capabilities via multiple integrated platforms. The locations of performance are to be determined at the contract direct order level and are expected to be completed May 28, 2025. These awards are the result of fair and open competition. The initial delivery orders will be fully funded by fiscal year research, development, test and evaluation funds. The Air Force Life Cycle Management, Wright Patterson Air Force Base, Ohio, is the contracting activity. ARMY H&L Contracting LLC, Bay Shore, New York, was awarded a $30,628,978 firm-fixed-price contract to perform construction/rehabilitation of the seawall system at Montauk Point Lighthouse, Suffolk County, New York. Bids were solicited via the internet with five received. Work will be performed in Montauk, New York, with an estimated completion date of Feb. 1, 2023. Fiscal 2014 and 2020 civil construction funds in the amount of $30,628,978 were obligated at the time of the award. U.S. Army Corps of Engineers, New York, New York, is the contracting activity (W912DS-21-C-0004). NAVY WR Systems Ltd., Fairfax, Virginia, is awarded a $19,191,662 non-commercial, cost-plus-fixed-fee, indefinite-delivery/indefinite-quantity contract for engineering and program support services in support of the Relocatable Over-the-Horizon Radar Life Cycle Management Department at the Forces Surveillance Support Center, Chesapeake, Virginia. The contract will include a 48-month ordering period with no options. The ordering period is expected to begin April 2021 and be completed by March 2025. Work will be performed in Chesapeake, Virginia (42%); Fairfax, Virginia (39%); New Kent, Virginia (6%); Corpus Christi, Texas (3%); San Juan, Puerto Rico (3%); Adelaide, Australia (1%); San Diego, California (1%); Dayton, Ohio (1%); Colorado Springs, Colorado (1%); Washington, D.C. (1%); Arlington, Virginia (1%); and Key West, Florida (1%). Fiscal 2021 operation and maintenance (Navy) funds in the amount of $10,000 will be obligated to fund the contract's minimum amount and funds will expire at the end of the fiscal year. One source was solicited for this non-competitive, sole-source requirement pursuant to the authority set forth in 10 U.S. Code 2304(c)(1) in accordance with Federal Acquisition Regulation 6.302-1, with one offer received. The Naval Supply Systems Command, Fleet Logistics Center, Norfolk Contracting Department, Philadelphia Office, Philadelphia, Pennsylvania, is the contracting activity (N00189-21-D-Z015). Container Research Corp.,* Aston, Pennsylvania, is awarded an $11,539,383 firm-fixed-price, indefinite-delivery/indefinite-quantity contract. This contract provides for the procurement of up to a maximum quantity of 275 V-22 Mission Auxiliary Tank System storage containers for the Navy, Marines, Air Force and Foreign Military Sales customers. Work will be performed in Aston, Pennsylvania, and is expected to be completed in January 2026. No funds will be obligated at the time of award. Funds will be obligated on individual task orders as they are issued. This contract was not competitively procured pursuant to Federal Acquisition Regulation 6.302-1. The Naval Air Systems Command, Patuxent River, Maryland, is the contracting activity (N00019-21-D-0006). Advanced Computer Learning Co. LLC,* Fayetteville, North Carolina, is being awarded an $8,207,152 single-award, firm-fixed-price, indefinite-delivery/indefinite-quantity contract for the development of curriculum material and the instruction on the use of unique networks in the Joint Staff Joint Tactical Operations Interface Training Program and the U.S. Message Text Formatting Training Program in support of the Joint Staff, Joint Interoperability Division at the Joint Multi-Tactical School. The contract will include an 11-month base ordering period with an additional three consecutive one-year ordering period options, which if exercised, will bring the total value to $33,207,839. The base ordering period is expected to begin in January 2021 and be completed by December 2021. If the option is exercised, the ordering period will be completed by December 2024. All work will be performed in Fort Bragg, North Carolina. Fiscal 2021 operation and maintenance defense-wide funds in the amount of $10,000 will be obligated to fund the contract's minimum amount and funds will not expire at the end of the current fiscal year. This contract was competitively procured with the solicitation posted on Navy Electronic Commerce Online and beta.SAM.gov as a service-disabled veteran-owned small business set-aside, with nine offers received. The Naval Supply Systems Command, Fleet Logistics Center Norfolk Contracting Department, Philadelphia Office, Philadelphia, Pennsylvania, is the contracting activity (N00189-21-D-Z014). DEFENSE LOGISTICS AGENCY Alamo Strategic Manufacturing,** San Antonio, Texas, has been awarded a maximum $8,700,000 modification (P00008) exercising the second one-year option period of a one-year base contract (SPE1C1-19-D-1122) with two one-year option periods for knee and elbow pads. This is a firm-fixed-price, indefinite-delivery/indefinite-quantity contract. Locations of performance are Puerto Rico and Texas, with a Jan. 16, 2022, ordering period end date. Using military services are Army, Air Force and Marine Corps. Type of appropriation is fiscal 2021 through 2022 defense working capital funds. The contracting activity is the Defense Logistics Agency Troop Support, Philadelphia, Pennsylvania. *Small business ** Small disadvantaged business https://www.defense.gov/Newsroom/Contracts/Contract/Article/2469624/source/GovDelivery/

  • What reduced size, weight and power mean on the battlefield

    August 22, 2018 | International, C4ISR

    What reduced size, weight and power mean on the battlefield

    Computers on the battlefield take a beating. Beyond the everyday wear and tear, they also must endure extreme temperatures and often violent vibrations. To help ensure its systems give soldiers and commanders the information they need, the Army relies on its Mounted Family of Computer Systems program. Known as MfoCS, pronounced em-fox, the program covers detachable tablets to fully-loaded, vehicle-mounted workstations. C4ISRNET spoke recently with Bill Guyan, vice president of business development for Leonardo DRS, about advances in battlefield computing. C4ISRNET: We hear a lot about a new emphasis on the hardening of security of contractors. And not just contractors, but primes, and then their contractors. Obviously this has become a point of concern for DOD leadership. Bill Guyan: One of the big areas of emphasis for the Army in the procurement of the [Mounted Family of Computer Systems] (MFoCS) and particularly MFoC2 II, were areas related to security, both from a cyber security standpoint and the ability to assure that the system was free from malware or any external threat. So there's a very comprehensive supply chain risk management strategy put in place and for this program we believe that this is the most secure edge computing system that the Army's ever purchased. It's absolutely critical that it be so, since ultimately there will be somewhere between a 100,000 and 125,000 of these systems fielded across the Army and Marine Corps, at the edge of the battlefield with each one of these systems serving as potential on ramp to the network and in an area of situational awareness that is absolutely mission critical. There was a time when we derived quick benefit from having an advantage and a capability that our opponents didn't. And over time the capability has evolved from a nice to have capability to a mission critical capability that we'd be hard pressed to fight without. C4ISRNET: The Army has put a lot of emphasis on size, weight and power. Can you explain how that manifests itself on the battlefield? Guyan: We optimize size, weight and power in two ways. At the hardware level we optimize by staying at the leading edge of available technologies, available commercial technologies and rapidly adapting and adopting them for employment in this mission critical extreme environment. The computers and displays are the soldiers' path to the network. It has to work at -40 centigrade and it has to work at 80 degrees centigrade. It has to work in extreme vibration and it has to work in contested EMI environments. It has to work all the time. For example, we led the charge in the adoption and fielding of solid state hard drives versus rotating media, which allowed us to not only improve the resiliency of the system, but also to reduce size, because we no longer have to isolate the rotating hard drive from the shock and vibration. We also migrated from the old backlight technology to an LED backlight, which is much more reliable, particularly in shock vibration at temperature extremes. But it also requires far less power. The other thing that we've been able to do is rapidly adapt the latest processor technologies when they're available. Of course, processors continue to get faster, smaller, and use less power. We're able to make sure that every generation of system can deliver more computing capability for less power, and less power means less heat. Full article: https://www.c4isrnet.com/show-reporter/technet-augusta/2018/08/21/what-reduced-size-weight-and-power-mean-on-the-battlefield/

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