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  • Qatari research center chooses Leonardo for cyber range

    4 février 2021 | International, C4ISR, Sécurité

    Qatari research center chooses Leonardo for cyber range

    Agnes Helou BEIRUT — A Qatari cyber research center has selected Leonardo to provide a cyber range and training system to support security operations, the Italian firm announced Feb. 3. The Qatar Computing Research Institute, or QCRI, was established by the Qatar Foundation for Education, Science and Community Development. The training platform ordered by the QCRI is capable of simulating cyberattacks so users can assess the resilience of digital infrastructure. “The training is completely to be performed in Qatar, and it is expected, through an approach oriented to ‘train the trainers,' to provide courses to a significant number of operators involved in the cybersecurity framework,” Tommaso Profeta, managing director of Leonardo's Cyber Security Division, told Defense News. He noted that training and exercise scenarios can be customized using a drag-and-drop graphical interface. The platform can also analyze and classify the results of simulated attacks based on data collected during real-world offensive campaigns. Scenarios can be used for individual training or classroom experiences, and they provide practice for security operations centers and incident response activities. This training tool “will allow the QCRI to deliver a complete cyber training process, from the design of the learning path to specific training sessions. Users will be able to practice their skills in simulated attack and defense scenarios, employing both information technology (IT) and operational technology (OT). The training will produce qualified teams of operators equipped with up-to-date knowledge and techniques, ready to face ever-evolving cyber threats,” according to a company statement. “The best cyber training/testing environments are in theory real production systems. But in practice for such environments, institutions, enterprises and organizations cannot easily experience critical situations without paying high, sometime unaffordable prices,” Profeta said. “Training and testing are therefore the two essential, human-driven processes that can effectively support the overall cyber ‘protection' loop, but only if they can cope with real threats and highly realistic systems in highly realistic situations.” Cyber ranges provide a controlled environment where cybersecurity experts can practice their technical and soft skills in emulated complex networks and infrastructures to learn how to respond to real-world cyberattacks. In these environments, cyber tools can be stressed to reveal their limits and vulnerabilities before deployment into cyberspace. Leonardo's platform challenges such assets and provides digital twin environments for predeployment testing. Asked whether other Gulf countries have expressed interest in this training system, Profeta said it “has already been presented to other high-level Middle East stakeholders, and a significant level of interest has been registered for the platform.” What scenarios are available? Those using the cyber range will try to defend against simulated but realistic cyberattacks. According to Profeta, these include: Man-in-the-middle attacks. Botnets. Exploitation of client and server vulnerabilities with lateral movements in search of sensitive data. Distributed denial-of-service attacks (HTTP flooding or domain name system reflection) designed to disrupt connections to a targeted server. Ransomware via multiple vectors, such as spear-phishing via email or drive-by downloads, relying on DNS-based covert channels. Data exfiltration of personally identifiable information and intellectual property. Though it's difficult to measure the potential effectiveness of this platform for Qatar, the company official predicted the system will reduce the cost of and improve the user experience in cyber training. Leonardo also supplies the NATO Computer Incident Response Capability, a cyber defense product. https://www.c4isrnet.com/cyber/2021/02/03/qatari-research-center-chooses-leonardo-for-cyber-range

  • Contract Awards by US Department of Defense - February 03, 2021

    4 février 2021 | International, Aérospatial, Naval, Terrestre, C4ISR, Sécurité

    Contract Awards by US Department of Defense - February 03, 2021

    NAVY Northrop Grumman Systems Corp., Herndon, Virginia, is awarded a $329,891,030 firm-fixed-price, cost-plus-fixed-fee modification to previously awarded contract N00024-17-C-6327 to exercise options for Joint Counter Radio-Controlled Improvised Explosive Device Electronic Warfare Increment One Block One (I1B1) dismounted systems, mounted systems, mounted auxiliary kits, operational level spares, depot level spares and engineering support services. This contract involves Foreign Military Sales (FMS) to the government of Australia. Work will be performed in San Diego, California, and is expected to be complete by December 2022. FMS (Australia) funding in the amount of $116,491,337 will be obligated at time of award and will not expire at the end of the current fiscal year. The Naval Sea Systems Command, Washington, D.C., is the contracting activity. Sikorsky Aircraft Corp., a Lockheed Martin Co., Stratford, Connecticut, is awarded a $19,429,150 modification (P00005) to cost-plus-fixed-fee order N00019-19-F-2972 against previously issued basic ordering agreement N00019-19-G-0029. This order provides for non-recurring engineering, engineering change order, logistics and programmatic support of the Data Transfer Unit and Defensive Electronic Countermeasure System Replacement and ARC-210 program, to replace existing subsystems within the CH-53K production aircraft. Work will be performed in Cedar Rapids, Iowa (55.82%); Stratford, Connecticut (35.7%); and Fort Worth, Texas (8.48%), and is expected to be completed in August 2021. Fiscal 2021 aircraft procurement (Navy) funds in the amount of $19,429,150 will be obligated at the time of award, none of which will expire at the end of the current fiscal year. The Naval Air Systems Command, Patuxent River, Maryland, is the contracting activity. ARMY Dean Marine & Excavating Inc.,* Mount Clemens, Michigan (W911XK-21-D-0001); Geo. Gradel Co.,* Toledo, Ohio (W911XK-21-D-0002); Great Lakes Dock and Materials LLC,* Muskegon, Michigan (W911XK-21-D-0003); The King Co. Inc.,* Holland, Michigan (W911XK-21-D-0004); Luedtke Engineering Co.,* Frankfort, Michigan (W911XK-21-D-0005); MCM Marine Inc.,* Sault Ste. Marie, Michigan (W911XK-21-D-0006); Morrish-Wallace Construction Inc., doing business as RYBA Marine Construction,* Cheboygan, Michigan (W911XK-21-D-0007); and Roen Salvage Co.,* Sturgeon Bay, Wisconsin (W911XK-21-D-0008), will compete for each order of the $130,000,000 firm-fixed-price contract for dredging/construction services within the Great Lakes and Ohio River division. Bids were solicited via the internet with nine received. Work locations and funding will be determined with each order, with an estimated completion date of Feb. 2, 2025. U.S. Army Corps of Engineers, Detroit, Michigan, is the contracting activity. Wilson Perumal & Co.,* Dallas, Texas, was awarded a $25,000,000 firm-fixed-price contract to support Army Materiel Command to evaluate the readiness and efficiency of depot/arsenal operations. Bids were solicited via the internet with 10 received. Work locations and funding will be determined with each order, with an estimated completion date of Feb. 4, 2026. U.S. Army Contracting Command, Rock Island Arsenal, Illinois, is the contracting activity (W52P1J-21-D-0019). Pine Bluff Sand and Gravel Co., White Hall, Arkansas, was awarded a $16,620,400 modification (P00003) to contract W912P8-20-C-0002 for maintenance dredging. Work will be performed in New Orleans, Louisiana; and Black Hawk, Louisiana, with an estimated completion date of Feb. 5, 2022. Fiscal 2021 civil construction funds in the amount of $16,620,400 were obligated at the time of the award. U.S. Army Corps of Engineers, New Orleans, Louisiana, is the contracting activity. AIR FORCE Invictus International Consulting LLC, Alexandria, Virginia, has been awarded a $97,943,684 cost-reimbursement contract for Operational Simulated Cyber Environment Resiliency Software prototype/hardware. This contract provides for research and development of capabilities in modeling, simulation and testing cyber technologies across the full spectrum of cyber operations to aid the Air Force and the Department of Defense (DOD). Research and further development will provide the Air Force and DOD with next generation cyber tools and technologies that enhance cyber resiliency and can be rapidly transitioned and integrated to support Cyber Mission Forces. Work will be performed in Alexandria, Virginia, and is expected to be completed Feb. 3, 2025. This award is the result of a competitive acquisition and two offers were received. Fiscal 2021 research, development, test and evaluation funds in the amount of $967,000 are being obligated at the time of award. Air Force Research Laboratory, Rome, New York, is the contracting activity (FA8750-21-C-1504). Leidos Inc., Reston, Virginia, has been awarded a $68,600,000 indefinite-delivery/indefinite-quantity contract with cost-plus-fixed-fee task orders for the Threat Assessment and Aircraft Protection Defensive Electronic Warfare program. This program will conduct innovative research and development to design expendable (ordinance) and directed-energy (signal) countermeasure concepts, in electro-optical and multi-spectrum electro-optical/radio-frequency domains, in response to an ever-changing missile threat landscape using threat exploitation; modeling and simulation evaluation; and hardware and field testing. Work will be performed at Wright-Patterson Air Force Base, Ohio, and is expected to be completed Jan. 29, 2025. This award is the result of a competitive acquisition and one offer was received. Fiscal 2020 and 2021 research, development, test and evaluation funds in the amount of $1,431,071 will be obligated at the time of award on the first task order. Air Force Research Laboratory, Wright-Patterson AFB, Ohio, is the contracting activity (FA8650-21-D-1014). *Small business https://www.defense.gov/Newsroom/Contracts/Contract/Article/2492400/source/GovDelivery/

  • As mission-capable rates languish, Pentagon should embrace digital engineering

    4 février 2021 | International, Aérospatial, Naval, Terrestre, C4ISR, Sécurité

    As mission-capable rates languish, Pentagon should embrace digital engineering

    Ben Kassel and Bruce Kaplan While many Pentagon initiatives face a change of course under new Defense Secretary Lloyd Austin, its digital engineering strategy deserves a push forward. The strategy, issued in 2018 by then-Under Secretary of Defense for Research and Engineering Michael Griffin, aimed to help military services harness modern sustainment methods like additive manufacturing, digital twin and augmented reality. For the Department of Defense, enterprisewide implementation of these techniques would lower costs, increase weapon systems' mission-capable rates and afford flexibility in fleet modernization. But digital engineering requires digital, 3D data — and the DoD doesn't have enough. Modern sustainment practices hinge on the availability of what's known as the model-based definition, 3D models and digitized descriptive information for a system or component. Using computer-aided design programs, engineers can manipulate the data to enable practices like condition-based maintenance, eliminating weapon systems' unnecessary downtime. Digital data can facilitate seamless transit from original equipment manufacturers, or OEM, to procurers and sustainers in the field and at maintenance depots worldwide. However, the technical data for most weapons systems remains elusive to the services and their program management offices, or PMO, or the datasets are available only in 2D documentation, such as blueprints. Meanwhile, readiness suffers. Of 46 weapons systems reviewed by the Government Accountability Office, only three achieved annual mission-capable targets at least five times between 2011 and 2019. More than half (24) failed to meet their goal even once, according to GAO's November 2020 report. The KC-13OJ Super Hercules air refueler and the MV-22B Osprey tiltrotor were among the programs to miss their target all nine years. GAO cited inaccessible technical data as a contributing factor for both programs. Of the Super Hercules, the report says: “The Navy and Marine Corps were unable to obtain the technical data of the aircraft ... the lack of the technical data compromises [their] ability to analyze and resolve sustainment issues.” Similar concerns were raised about the P-8A Poseidon anti-submarine aircraft, saying “technical data needed for maintenance has not been readily available to the Navy.” Dozens of systems, including the F-35 fighter jet, face similar obstacles. Notably, the GAO report referred not to 3D, model-based data but rather legacy incarnations: blueprints and documents that may have been converted “digitally” into PDFs. This is a far cry from the machine-readable formats required to use digital engineering technologies across the enterprise. The GAO cited the production of 170 “structural repair manuals” as a means of narrowing the Osprey's technical data gaps. The labor-intensive replication of physical documents — the PMO projected five years to deliver all of them — is a piecemeal solution, at best. Troublingly, modern sustainment methods seem beyond the reasonable expectation of not just PMOs but even forward-looking organizations like the GAO. To foster its DoD-wide implementation, the digital engineering strategy needs reinforcement, which could take the following forms: Champion the availability of model-based technical data in policy. Modern sustainment requires a shift from decadesold practices. Paper data that supports secondhand manuals and haphazard 2D-to-3D conversion should no longer be the norm. Services cannot lead this transition on their own, however. Federal guidance on the acquisition, creation, use and management of authentic, model-based technical data would jump-start the movement toward digital sustainment. Educate PMOs to acquire technical data rights strategically. Policy must be partnered by the right mindset. One reason PMOs don't have technical data is that sometimes they never asked for it. An afterthought at the time of procurement, technical data is often overlooked until maintenance is needed. Then it's too late — or too expensive — to acquire the needed rights. Leadership can encourage PMOs to identify potential sustainment solutions — and the technical data rights needed to execute them — at the time of acquisition. Assert the government's rights to model-based technical data. A sea change in sustainment depends on building unprecedented trust between OEMs and PMOs. OEMs understandably need to protect intellectual property, but their grip on model-based technical data must loosen for digital sustainment to flourish at scale. This can be accomplished without OEMs surrendering their competitive advantage. In many cases, OEMs need not transfer custody of the data itself for sustainment activities. Limited-rights agreements and trusted third-party arrangements can be tailored to enable data availability only when needed or to execute specific solutions. Giving OEMs confidence in these approaches will entail extensive dialogue and commitment by DoD leaders. Given the GAO's assessment, seeking a breakthrough is worth the attempt. Operationalizing the DoD strategy requires work in other areas as well, particularly in removing intra- and inter-organizational stovepipes, and securing the data's transmission and storage. But the first step toward a model-based sustainment enterprise is ensuring the availability of modern technical data. This need will only grow more crucial. Today's sustainment practices too closely resemble those of 30 years ago, not what they should be 30 years from now. We're already playing catch up. It's time to view sustainment with 3D glasses. Ben Kassel is a senior consultant at LMI. He previously worked with the U.S. government on defining and exchanging technical data used for naval architecture, marine and mechanical engineering, and manufacturing. Bruce Kaplan is a fellow at LMI. He previously served as technical director of logistics for research and development at the Defense Logistics Agency. https://www.c4isrnet.com/opinion/2021/02/03/as-mission-capable-rates-languish-pentagon-should-embrace-digital-engineering/

  • To keep up with rivals, DoD nominee will weigh consolidation vs. innovation

    4 février 2021 | International, Aérospatial, Naval, Terrestre, C4ISR, Sécurité

    To keep up with rivals, DoD nominee will weigh consolidation vs. innovation

    By: Joe Gould WASHINGTON ― President Joe Biden's nominee for deputy defense secretary, Kathleen Hicks, said she is “concerned” about consolidation in the defense industrial base, and that competition is needed to maintain an edge over China and Russia. Hicks, whose office would review deals that involve national security issues if she is confirmed by the Senate, told lawmakers Tuesday that she would work with them to ensure a healthy defense industrial base. The comments came amid market expectations that defense deal-making could take off in 2021. “Extreme consolidation does create challenges for innovation,” Hicks told the Senate Armed Services Committee. “We need to have a lot of different good ideas out there. That's our competitive advantage over authoritarian states like China, and Russia. And so if we move all competition out, obviously, that's a challenge for the taxpayer. But it's also a challenge in terms of the innovation piece.” As the space sector and technological developments drive growth in the aerospace and defense sector and the pandemic weakens commercial aviation firms, companies are “likely to pursue opportunities for consolidation,” the consulting firm Deloitte said in a recent report. Firms could seek new merger and acquisition opportunities, the report said, to “capture more value, drive cost-competitiveness, or acquire targeted niche capabilities and emerging technologies” such as “advanced air mobility, hypersonics, electric propulsion, and hydrogen-powered aircraft.” Recent years have seen a number of major deals, including the combination of Harris and L3 Technologies, United Technologies Corp. and Raytheon; BAE Systems and Collins Aerospace, and General Dynamics and CSRA. Lockheed Martin's $4.4 billion acquisition of Aerojet Rocketdyne, announced in December, has yet to clear regulators. The Federal Trade Commission and the Justice Department also review mergers and acquisition activity in the defense sector. At Tuesday's hearing, Connecticut Democratic Sen. Richard Blumenthal, whose state hosts General Dynamics Electric Boat, told Hicks a drop in the number of submarine suppliers from 17,000 to 5,000 over recent decades suggested broader problems for the defense industrial base, problems that he said were, “extremely alarming to me.” Blumenthal indicated Hicks had committed prior to the hearing to aid small suppliers struggling with the pandemic's economic fallout and to develop new small and medium suppliers. (This was one focus of DoD's acquisition and sustainment office under the previous administration.) “I'm hoping you will focus on the supply chain that is vitally important to suppliers like Electric Boat or Raytheon or any of our major sources of supply,” said Blumenthal, who has served as the top Democrat on SASC's Seapower Subcommittee. A broader theme for the hearing was how Hicks, whose job involves supervising the defense budget, would invest in forward-leaning technologies under a flat budget and divest from existing weapons platforms. Meanwhile, lawmakers grilled Hicks about whether she supported spending on nuclear modernization, shipbuilding and other programs with connections to lawmakers' home states. Acknowledging the political and budget tensions, Hicks said she wants to link future budgetary decisions with concepts for operations, to buy “capabilities that actually line up to theories of victory for how we are trying to pace challenges from China and Russia.” Other lawmakers told Hicks they wanted an easier paths for smaller, cutting edge firms from outside the Beltway to do business with the Pentagon and for them to scale production of their products, beyond the experimentation phase. “We've had testimony before this committee that many smaller companies, particularly in Silicon Valley, and in the technology field generally have given up on the Pentagon, it's too complicated is too lengthy is too expensive, even to fill out the forms,” said Sen. Angus King, I-Maine. For her part, Hicks said Tuesday she would “increase the speed and scale of innovation in our force,” and she would work to understand how alternative acquisitions methods are servings smaller non-traditional suppliers. She affirmed that those firms cannot survive on research and development funding alone. “I do think a sustain level of [research and development] investment is vital, but we actually have to field capabilities, and that's a place where DoD has really struggled,” she said, adding that exercises and experiments help demonstrate the value of new technologies. “When we can demonstrate value, then we're in a much better position to have a dialogue with Congress and with industry about where that where those capabilities can take us.” https://www.defensenews.com/congress/2021/02/02/to-keep-up-with-rivals-dod-nominee-will-weigh-consolidation-vs-innovation/

  • With Deepwave Digital, Northrop Grumman is pushing processing to the edge

    3 février 2021 | International, C4ISR

    With Deepwave Digital, Northrop Grumman is pushing processing to the edge

    Nathan Strout WASHINGTON — Northrop Grumman says a new investment into small startup Deepwave Digital will allow it to push data processing much closer to the point of collection, decreasing the amount of data that needs to be transported and getting products to war fighters faster. Northrop Grumman will install Deepwave Digital's artificial intelligence solution on airborne and on orbit payloads, said Chris Daughters, the company's vice president of research, technology and engineering for aeronautics systems. With the AI incorporated into the payload, the satellite or aircraft will no longer need to send data back to the ground to be processed. Instead, the payload will process the data itself. The innovation, said Daughters, is in incorporating the AI software with the hardware used in various Northrop Grumman payloads. “Deepwave Digital really has an innovative architecture that blends artificial intelligence with some advanced hardware in the RF [radio frequency] domain, whereas a lot of artificial intelligence in the past has always been focused on, I'll just say, mining and scrubbing really big data or maybe doing customized things with video or audio,” said Daughters. In other words, the AI is able to process data at the edge, at the point of collection, instead of sending it down to Earth to be processed independently. “We have a lot of RF payload systems that collect information or collect intelligence for the war fighters and the government as a whole, and by embedding this innovative hardware and AI software, we are able to essentially filter and optimize and scrub and prioritize the data much nearer to the point of collection for that information,” said Daughters. AI has been key to the military's efforts to manage the torrent of data collected by government and commercial satellites, which is simply too much for human analysts to sort through on their own. While progress has been made in using AI to process satellite imagery, military officials are now tackling a related problem: the sheer amount of raw data being pushed out over the networks for processing at remote locations. To reduce the bandwidth needed for satellite imagery, U.S. Army officials say the military needs to shift to edge processing, meaning applying AI to the data and then sending the finished product out over the network instead of all of the raw data. “Edge processing is something that we're very interested in for a number of reasons. And what I mean by that is having smart sensors that can not only detect the enemy, [but] identify, characterize and locate, and do all those tasks at the sensor processing,” said John Strycula, director of the Army's task force focused on intelligence, surveillance and reconnaissance, at an October AUSA event. “If I only have to send back a simple message from the sensor that says the target is here ― here's the location and here's what I saw and here's my percent confidence ― versus sending back the whole image across the network, it reduces those bandwidth requirements,” he added. Daughters said Northrop Grumman is working to incorporate Deepwave Digital's AI solution into products in development or in limited production in the “very near term.” “The capability exists now. We just need to integrate it in with the systems,” said Daughters. “Our research and technology organization is already looking at how we could be injecting this hardware and AI capability in some of the systems that exist right now or very near term.” While the company is applying the AI to both space and airborne systems, the technology can be more easily integrated with airborne systems, where payloads can be more easily accessed or swapped out. https://www.c4isrnet.com/intel-geoint/2021/02/02/with-deepwave-digital-northrop-grumman-is-pushing-processing-to-the-edge/

  • Contract Awards by US Department of Defense - February 02, 2021

    3 février 2021 | International, Aérospatial, Naval, Terrestre, C4ISR, Sécurité

    Contract Awards by US Department of Defense - February 02, 2021

    AIR FORCE ViaSat Inc., Carlsbad, California, has been awarded a $50,800,000 cost-plus-fixed-fee, indefinite-delivery/indefinite-quantity contract for development on prototype space systems. The contractor will provide studies, design, manufacturing, integration, performance qualification, network space segment elements, launch, flight and demonstration of prototype space systems. This also includes the development, integration and demonstration with ground terminals in conjunction with the government ground segment to reduce risk and assess performance and functionality for future protected service. Work will be performed in Carlsbad, California, and is expected to be completed May 2, 2028. This award is the result of a competitive acquisition and one offer was received. Fiscal 2021 research, development, test and evaluation funds in the amount of $754,337 will be obligated when the first task order is awarded. Air Force Research Laboratory, Kirtland Air Force Base, New Mexico, is the contracting activity (FA9453-21-D-0029). NAVY ACTS-Meltech JV1 LLC,* Virginia Beach, Virginia (N00178-21-D-4403); Athena Construction Group Inc.,* Triangle, Virginia (N00178-21-D-4404); Cremer Global Services Inc.,* Melbourne, Florida (N00178-21-D-4405); Encon Desbuild JV2 LLC,* Bladensburg, Maryland (N00178-21-D-4406); HSU EGI JV LLC,* Gaithersburg, Maryland (N00178-21-D-4407); Matos Builders LLC,* Baltimore, Maryland (N00178-21-D-4408); New Dominion Construction LLC,* Dumfries, Virginia (N00178-21-D-4409); Signature Renovations LLC,* Capitol Heights, Maryland (N00178-21-D-4410); and Trinity USA Contracting Inc.,* White Stone, Virginia (N00178-21-D-4411), are awarded a combined $30,000,000 firm-fixed-price, indefinite-delivery/indefinite-quantity contract for facility repairs and renovations in multiple buildings, trailers and labs. This contract was competitively awarded among HUBZone small businesses. It provides standard maintenance, sustainment, repair and minor construction as well as field surveying of sites, mapping of new site conditions, soil boring sampling, sampling and testing of potential existing hazardous construction materials, performing and providing engineering analysis and evaluations for purposes of structural and electrical capacities and providing energy computations for infrastructure solutions. Operation and execution are primarily focused in repairing, upgrading and nonstructural construction in accordance with and not exceeding Category II of the Naval Facilities Engineering Command Engineering & Construction Bulletin Issue No.2006-04. Each awardee will be awarded $500 (minimum contract guarantee per awardee) at contract award. These contracts do not include options and consist of a cumulative value of $30,000,000 over a five-year period to the nine vendors combined. Work will be performed in Dahlgren, Virginia (85%); Wallops Island, Virginia (5%); Virginia Beach, Virginia (5%); and Washington, D.C. (5%), and is expected to be completed by February 2026. Fiscal 2021 sustainment, restoration and modernization funds in the amount of $4,500 will be obligated at the time of award and will expire at the end of the current fiscal year. All other funding will be made available at the delivery order level as contracting actions occur. This contract was competitively procured via the beta.SAM.gov website, with 11 offers received. The Naval Surface Warfare Center, Dahlgren Division, Dahlgren, Virginia, is the contracting activity. Huntington Ingalls Industries, Newport News Shipbuilding division, Newport News, Virginia, is awarded a $12,500,000 cost-plus-fixed-fee modification to previously awarded contract N00024-16-C-4316 to continue performance of the repair, maintenance and upgrade efforts on the USS Helena (SSN 725) Dry-Docking Selected Restricted Availability. Work will be performed in Newport News, Virginia, and is expected to be completed by April 2021. Fiscal 2021 operation and maintenance (Navy) funding in the amount of $12,500,000 will be obligated at time of award and will expire at the end of the current fiscal year. The Supervisor of Shipbuilding, Conversion and Repair, Newport News, Virginia, is the contracting activity. DEFENSE LOGISTICS AGENCY Federal Prison Industries Inc.,** doing business as UNICOR, Washington, D.C., has been awarded a maximum $21,978,000 modification (P00009) exercising the first one-year option period of a one-year base contract (SPE1C1-20-D-F057) with four one-year option periods for various types of coats. This is a firm-fixed-price, indefinite-delivery/indefinite-quantity contract. Locations of performance are Illinois, Texas, North Carolina, and Washington, D.C., with a Feb. 5, 2022, ordering period end date. Using military services are Army and Air Force. Type of appropriation is fiscal 2021 through 2022 defense working capital funds. The contracting activity is the Defense Logistics Agency, Troop Support, Philadelphia, Pennsylvania. Delavan Inc., West Des Moines, Iowa, doing business as Collins Aerospace, has been awarded a maximum $9,999,999 firm-fixed-price, indefinite-quantity contract for T700 aircraft engine fuel injector assemblies. This was a competitive acquisition with one response received. This is a five-year contract with no option periods. Location of performance is Iowa, with a Feb. 2, 2026, performance completion date. Using military services are Army, Navy and Air Force. Type of appropriation is fiscal 2021 through 2026 defense working capital funds. The contracting activity is the Defense Logistics Agency Aviation, Richmond, Virginia (SPE4A721D0099). ARMY Weeks Marine Inc., Covington, Louisiana, was awarded an $11,791,200 modification (P00001) to contract W912P8-20-C-0059 for maintenance dredging of the Southwest Pass of the Mississippi River from Baton Rouge to the Gulf of Mexico. Work will be performed in Venice, Louisiana, with an estimated completion date of June 30, 2021. Fiscal 2020 civil construction funds; and fiscal 2020 non-federal sponsor, state of Louisiana funds in the amount of $11,791,200 were obligated at the time of the award. U.S. Army Corps of Engineers, New Orleans, Louisiana, is the contracting activity. *Small business **Mandatory source https://www.defense.gov/Newsroom/Contracts/Contract/Article/2490862/source/GovDelivery/

  • India releases details of new defense budget

    3 février 2021 | International, Aérospatial, Naval, Terrestre, C4ISR, Sécurité

    India releases details of new defense budget

    By: Vivek Raghuvanshi NEW DELHI — India on Monday allocated $18.48 billion for weapons procurement in its 2021-2022 defense budget amid an ongoing military standoff with China and financial stress on the national economy due to the coronavirus pandemic. Excluding pensions, the new defense budget totals $49.6 billion, an increase of more than 3 percent from the previous year's $47.98 billion. New capital expenditure of $18.48 billion meant for arms procurement witnessed an increase of about 16 percent from the previous year's $15.91 billion. This is the highest-ever increase in capital outlay for defense in the last 15 years, according to Indian Defence Minister Rajnath Singh. An additional $2.84 billion was spent on emergency arms purchases in the summer of 2020 to deal with the ongoing confrontation with China. The budget's revenue expenditure meant for maintenance of existing weapons, pay and allowances, and recurring expenses is set at $29.02 billion, compared to $28.75 billion in the previous defense budget. Officials in India point to the COVID-19 pandemic as disrupting the economy and thus affecting the government's income and driving spending decisions. Consequently, the defense budget might not be as high as it would've been were there not a pandemic, said Amit Cowshish, a former financial adviser for acquisition at the Ministry of Defence. Cowshish noted that the funds may be inadequate for all the planned acquisitions from abroad and at home to be signed during the upcoming financial year, which begins April 1. Capital expenditure is essentially defense funding meant for fresh arms procurement and existing liabilities from previously conducted defense contracts. Revenue expenditure is defense spending meant for the pay and allowances of military personnel as well as the maintenance of weapons and other existing inventory items. The Army will receive $4.9 billion in capital expenditure, which is an increase of 8.17 percent from the previous year's $4.53 billion. “The service could buy additional military vehicles and upgrade its drones fleet,” a senior Army official said. The service's revenue expenditure is set at $20.37 billion, compared to $20.11 billion in the previous budget. The Navy will receive $4.55 billion in capital expenditure, which is an increase of nearly 22 percent from previous year's $3.73 billion. This could pave the way for the service to buy 10 tactical MQ-9 Reaper drones from General Atomics through the U.S. Foreign Military Sales program, an Indian Navy official said. The revenue expenditure for the Navy is $3.19 billion, which is meant for the maintenance of warships and submarines, compared to $3.13 billion in the previous budget. The Air Force will receive $7.2 billion in capital expenditure, which is a hike of 19 percent from the previous year's $6.05 billion. According to a service official, this will go toward a new contract for 83 homemade LCA MK1A Tejas light combat aircraft, an existing commitment to pay for 36 Rafale fighters from France and five units of S-400 missile defense systems from Russia, among other efforts. The Air Force's revenue expenditure is $4.19 billion, compared to $4.1 billion in the previous budget. About $1.55 billion in capital expenditure will go toward the state-owned Defence Research and Development Organisation for new projects, compared to $1.47 billion in the previous budget. DRDO has also been given a revenue expenditure totaling $1.24 billion, compared to $1.2 billion last year. This year, existing liabilities could eat up to 90 percent of the new capital expenditure, which will impact several new weapons procurement efforts, an MoD official said. But if that high percentage is accurate, according to Cowshish, there must be a lot of equipment already on contract. The military will have to make do with whatever amount is left over for acquiring new systems, he noted. “Capability-building and self-reliance ... are long-term projects, which are not dependent entirely on the budgetary allocation in a particular year. Hopefully things will improve in the future.” https://www.defensenews.com/global/asia-pacific/2021/02/02/india-releases-details-of-new-defense-budget/

  • HENSOLDT South Africa launches new radar business

    3 février 2021 | International, C4ISR

    HENSOLDT South Africa launches new radar business

    Pretoria, South Africa, February 1, 2021 – HENSOLDT South Africa has launched its new radar business after acquiring the Air Traffic Management (ATM) and Defence & Security business units of Tellumat at the end of 2020. Together with the company's existing radar and other capabilities, these business lines are integrated to form the Radar Business Unit of HENSOLDT South Africa. The acquired activities represent an extensive portfolio, more than 50 years of expertise in the defence electronics landscape and a workforce of over 100 employees. “With the integration of the Tellumat Defence & Security and ATM business units into HENSOLDT South Africa, we are now representing the three major sensor solution business lines of the HENSOLDT Group here in South Africa,” says Rynier van der Watt, Managing Director of HENSOLDT South Africa. “Expanding from Optronics and Spectrum Dominance to now also include radar, identification friend or foe (IFF) and datalinks therefore creating a complete sensor solutions offering,” says Van der Watt. Through this acquisition, HENSOLDT South Africa's capabilities are expanded with a new portfolio area, centring around radar, IFF and datalinks. The radar offering focuses on naval and land radar, which will include leading-edge new development in this product range. Identification friend or foe (IFF) and datalinks will also be offered, where HENSOLDT is inheriting a world-class product range that it aims to enhance even further. Finally, air traffic management (ATM) and radar services become part of the overall portfolio, with the aim of expanding the ATM services and developing existing radar support services into full-blown maintenance, repair and operations (MRO). Heading up these activities is Bennie Langenhoven, Chief Executive of the Radar Business Unit, previously the head of Tellumat's ATM business unit. “Launching the Radar Business Unit of HENSOLDT South Africa is a strategic expansion of HENSOLDT's radar business with the goal to become the leading manufacturer and exporter of air-surveillance and defence radars on the African continent,” says Langenhoven. The South African radar capability will integrate with and expand on the Group's existing radar products. “Our long track record in the maintenance, repair and operation of radar systems puts us in a very good position to not only support the Group's radar portfolio, but also those of our partners and OEMs, including legacy systems,” says Langenhoven. In addition to providing the latest radar technology, HENSOLDT South Africa also offers midlife upgrades to extend the life of existing radar systems, especially in cases where budget constraints limit or prevent the acquisition of new radars. The acquisition also gives rise to strong synergies between HENSOLDT South Africa's Radar, Optronics and GEW business units, with collaboration envisioned on various fronts. The ASTUS tactical surveillance unmanned aerial system (UAS), previously part of the Defence & Security business unit in Tellumat, is being integrated into HENSOLDT South Africa's Optronics portfolio as part of the company's strong airborne capability. The ASTUS' exceptional product offering, combined with HENSOLDT's design, manufacturing and certification competency, gives ASTUS the opportunity to become a world-class product and game changer in the market. Through its Optronics and GEW business units, HENSOLDT South Africa has already achieved significant success as a sensor solutions house in the world market, delivering more than 55 products into 40 export countries, with a combined heritage of 70 years. HENSOLDT South Africa now increases its portfolio to more than 60 products, exported to over 43 countries. HENSOLDT South Africa aims to be a leader in driving innovation and fostering local capability and expertise. To further expand its technical capability in South Africa, “the Radar business unit will also become the custodian of the HENSOLDT South Africa engineering hub, where we will be incubating new radar products to support the HENSOLDT Group,” says Van der Watt. The HENSOLDT Group is expanding its radar product portfolio through the development of a next generation air defence radar product range in HENSOLDT South Africa. “This development marks the first time that a new HENSOLDT tactical air defence radar for land and sea is developed outside Germany,” says Erwin Paulus, head of HENSOLDT's Radar Division. “The opening of the HENSOLDT Radar Business Unit in South Africa is of high strategic importance to continue our efforts to further internationalise the HENSOLDT Radar Business,” says Paulus. The company is pleased that this development will also contribute to the country's wider technical and defence industry, as well as the growth of the economy. “Partnerships with local industry players are currently one of our focus areas,” says Langenhoven. “These partnerships aligns well with HENSOLDT South Africa's strategy to maintain strong relationships with suppliers and local OEMs,” continues Langenhoven. With an extensive portfolio representing all HENSOLDT's major business lines, five sites in South Africa and now employing a workforce of more than 700 employees, HENSOLDT South Africa is the Group's biggest industrial footprint outside Europe. Therefore, this expansion strategy is central to HENSOLDT's vision to become the leading, platform-independent provider of defence and security sensor solutions worldwide. About HENSOLDT South Africa HENSOLDT South Africa is a global pioneer of technology and innovation in defence and security electronics. With its combined experience, creativity and innovation, HENSOLDT South Africa brings together a comprehensive range of products, systems and services across defence and civil markets, from electronic warfare and optronics, spectrum monitoring and security solutions, as well as radar, IFF and datalink. With more than 700 local employees and combined revenues in excess of R1.7 billion, HENSOLDT South Africa is one of the largest defence and security electronics companies in South Africa. About HENSOLDT HENSOLDT is a pioneer of technology and innovation in the field of defence and security electronics, with more than 150 years of heritage through predecessor companies such as Carl Zeiss, Airbus, Dornier, Messerschmitt and Telefunken. Based in Taufkirchen near Munich, Germany, the company is a leading strategic player in the field of sensor solutions for defence and non-defence applications. HENSOLDT develops new products to combat a wide range of threats based on innovative approaches to data management, robotics and cybersecurity. With more than 5,500 employees, HENSOLDT generated revenues of 1.11 billion euros in 2019. Since September 2020, HENSOLDT has been listed on the Frankfurt Stock Exchange and the SDAX stock market index there. www.hensoldt.net Press contact Ferri Erasmus Tel.: +27 (12) 421 6290 ferri.erasmus@hensoldt.net View source version on HENSOLDT: https://www.hensoldt.net/news/hensoldt-south-africa-launches-new-radar-business/

  • Cyberdéfense : Thales investit dans son site de Cholet

    3 février 2021 | International, C4ISR, Sécurité

    Cyberdéfense : Thales investit dans son site de Cholet

    Thales investit dans ses infrastructures à Cholet, où un tout nouveau centre de recherche et développement (R&D) doit être construit à côté de son plus ancien site de production en France, né en 1936. Ce site va se spécialiser dans les systèmes d'information sécurisés et les activités de cyberdéfense. « Sur ce site, nous voulons pouvoir lancer un cycle complet : développer un projet en R&D, le qualifier, produire et maintenir celui-ci, ainsi qu'assurer les missions de formation du personnel », explique Jean-Pascal Laporte, chef d'établissement de Cholet et directeur industriel pour les activités de communication de Thales. Entre 400 à 500 nouveaux salariés vont être recrutés sur le site de Cholet à partir de cette année. Les profils type ingénieur ou doctorant sont les plus recherchés à la fois dans les domaines de l'électronique, du développement logiciel, ainsi que des experts en cybersécurité et en communication par satellite. L'entreprise, qui compte aujourd'hui 23% de femmes dans ses effectifs, affiche également comme objectif prioritaire d'élever sensiblement ce pourcentage. Le Parisien du 1er février 2021

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