20 août 2024 | International, Aérospatial

Lockheed, Istari partner to demonstrate digital aircraft certification

The firm will use its digital engineering platform to modify and certify a drone — in this case, Lockheed Martin Skunk Works' X-56A.

https://www.c4isrnet.com/air/2024/08/20/lockheed-istari-partner-to-demonstrate-digital-aircraft-certification/

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  • Lockheed Martin And Fincantieri Marinette Marine Awarded Contract To Build Littoral Combat Ship 31

    22 janvier 2019 | International, Naval

    Lockheed Martin And Fincantieri Marinette Marine Awarded Contract To Build Littoral Combat Ship 31

    WASHINGTON, D.C., Jan. 21, 2019 – The U.S. Navy awarded the Lockheed Martin (NYSE: LMT) and Fincantieri Marinette Marine (FMM) team a fixed-price-incentive-fee contract to build an additional Littoral Combat Ship (LCS). LCS 31 will be built in Marinette, Wisconsin, at FMM, the Midwest's only naval shipyard, and is the 16th Freedom-variant LCS ordered by the Navy to date. The team will leverage capital investment and improvement in the shipyard and efficiencies created with serial production to maintain high quality at an affordable cost. "We are excited to continue our partnership with the Navy and FMM to build and deliver capable ships to the fleet,” said Joe DePietro, vice president and general manager, Lockheed Martin Small Combatants and Ship Systems. "With the Freedom-variant in serial production, we continue to enhance efficiency and incorporate capability while maintaining ship and program affordability." Since the LCS program's inception, Freedom-variant LCS production has injected hundreds of millions of dollars into local economies throughout the Midwest. The program supports thousands of direct and indirect jobs throughout the United States, including more than 7,500 in Michigan and Wisconsin. The Lockheed Martin and FMM team is in full-rate production of the Freedom-variant and has delivered seven ships to the U.S. Navy to date. There are seven ships in various stages of construction at FMM. Lockheed Martin's Freedom-variant LCS is highly maneuverable, lethal and adaptable. Originally designed to support focused missions such as mine warfare, anti-submarine warfare and surface warfare, the team continues to evolve capabilities based on rigorous Navy operational testing, sailor feedback and multiple successful fleet deployments. The Freedom-variant LCS integrates new technology and capability to affordably support current and future mission capability from deep water to the littorals. For additional information, visit: www.lockheedmartin.com/lcs. https://news.lockheedmartin.com/2019-01-21-Lockheed-Martin-and-Fincantieri-Marinette-Marine-Awarded-Contract-to-Build-Littoral-Combat-Ship-31

  • Multimillion-euro order from Hungary

    2 octobre 2019 | International, Terrestre

    Multimillion-euro order from Hungary

    September 30, 2019 - Rheinmetall to manufacture main armament and hulls for PzH 2000 self-propelled howitzer and Leopard 2 main battle tank. Rheinmetall is taking on an important role in the modernization of the Hungarian Army. The Düsseldorf-based Group is producing the main armament and fire control technology for forty-four Leopard 2 main battle tanks as well as the main armament, fire control technology and chassis for twenty-four PzH 2000 self-propelled howitzers. The package also encompasses thirteen HX and TGS logistic trucks. The contract, worth around €300 million, was recently signed. Delivery begins in 2021 and will be completed in 2025. Rheinmetall has partnered with Krauss-Maffei Wegmann (KMW) to carry out the project. In December 2018 KMW won an order from the Hungarian armed forces for forty-four new Leopard 2A7+ tanks and 24 new PzH 2000 self-propelled howitzers. This will make Hungary the 19th Leopard 2 user nation and the eighth nation to opt for the PzH2000. As well as having design authority, Rheinmetall is the original equipment manufacturer (OEM) of the 120mm smoothbore technology used in all versions of the Leopard 2 tank. The same is true of the 155mm L52 main gun of the PzH 2000 self-propelled howitzer. Tried and tested around the globe, the Group's 120mm smoothbore gun and ammunition have been continuously perfected right from the start. The higher-pressure 120mm L55A1 gun earmarked for the Leopard 2A7+ was successfully qualified at the end of 2017, and already supplied and installed for two Leopard 2 user nations in mid 2018. Moreover, the L55A1 tank gun is capable of firing the programmable DM11 multipurpose round. In addition, Rheinmetall possesses comprehensive expertise in the field of tracked armoured vehicles, including as an OEM. The Group developed the chassis of the PzH self-propelled howitzer. https://www.rheinmetall-defence.com/en/rheinmetall_defence/public_relations/news/latest_news/index_21504.php

  • Secrets of Tempest’s ground-breaking radar revealed

    18 janvier 2021 | International, Aérospatial, C4ISR

    Secrets of Tempest’s ground-breaking radar revealed

    Tom Kington ROME — Radar engineers on the Tempest fighter program have said they expect to break data-processing records. The secret, they explain, is all about miniaturization and going digital. The sixth-generation jet — planned by the U.K., Sweden and Italy and set to enter service after 2030 — will bristle with new technology, from its weaponry and propulsion to a virtual cockpit projected inside the pilot's helmet. But the group set the bar high in October by announcing the fighter's radar would process a quantity of data equivalent to nine hours of high-definition video — or the internet traffic of a medium-sized city — every second. Few details were given to back up the claim, but now U.K.-based engineers with Italian firm Leonardo, who are working on the radar, have shared clues with Defense News. Boosting performance will mean rethinking today's electronically scanned radars, which have grids of small Transmit Receive Modules, or TRM, on the antenna, each generating an individual radar beam which can follow different targets or combine with others to create a larger beam. The TRMs in the array are formed into groups, and the signals received by each group are fed to a receiver which digitalizes the data before passing it to the radar's processor. Due to their size, the receivers must be positioned back from the aircraft's nose and accept the incoming analogue radar signal down coaxial cables, which incurs some data loss before the signal is digitalized. To remedy that, Leonardo is working on miniaturizing the receivers so they can be moved up into the nose and integrated within the antenna, cutting out the need for a coaxial cable. The data emerging from the receiver must still travel to the processor, but by now it is digital and can flow down fiber-optic cables, reducing data loss. “Miniaturized receivers can digitalize the signal within the antenna much earlier in the receive chain,” said chief engineer Tim Bungey. That's one step up from the new state-of-the-art European Common Radar System Mark 2 radar that BAE Systems and Leonardo have signed to deliver for RAF Eurofighters, which will use coaxial cables. “Digitalizing the data closer to the array means more data can be received and transmitted, the data can be more flexibly manipulated, and there is more potential for using the radar as a multi-function sensor such as for data linking and for electronic warfare,” said Bungey. There is also a second advantage to miniaturized receivers: Many more can be installed, meaning each one handles fewer TRMs. “To improve performance and flexibility within the system, a key challenge is to divide the TRMs into more groups containing fewer TRMs, handled by more receivers,” said Bungey. “By achieving that, together with supporting wider bandwidths, you can generate significantly more data, giving greater flexibility for beam steering and multi-function operation,” he added. “We are aiming to increase the number of groups of TRMs, and therefore the number of receivers, beyond what will be offered by the MK2 radar for Eurofighter,” he added. While the radar may push the envelope, Duncan McCrory, Leonardo's Tempest chief engineer, said it would be a mistake to consider it as a stand-alone component. “The MRFS will be integrated within the wider Tempest Mission System, which incorporates a full suite of electronic-warfare and defensive-aids capabilities, EO/IR targeting and situational awareness systems, and a comprehensive communications system.” he said. “The data captured by these systems will be fused to create a rich situational awareness picture for the aircrew,” he added. “This information will also be fused with data received from other aircraft and unmanned systems, with machine learning used to combine and process the overall situational awareness picture for the aircrew. This avoids information overload in the cockpit, enabling the aircrew to quickly absorb data and make decisions based on suitably processed and validated information, and rapidly respond to threats in highly contested environments,” he said. McCrory added that Leonardo demonstrated aspects of human-machine teaming recently in a trial organized with the British Army and the MoD's Defence Science and Technology Laboratory, in which a Wildcat helicopter crew tasked a semi-autonomous UAV provided by Callen-Lenz to gather imagery and feed it back to the cockpit display via datalink. “It is these human-machine teaming principles that we will be building upon for Tempest,” he said. “The MRFS will be integrated within the wider Tempest Mission System, which incorporates a full suite of electronic-warfare and defensive-aids capabilities, EO/IR targeting and situational awareness systems, and a comprehensive communications system.” he said. “The data captured by these systems will be fused to create a rich situational awareness picture for the aircrew,” he added. “This information will also be fused with data received from other aircraft and unmanned systems, with machine learning used to combine and process the overall situational awareness picture for the aircrew. This avoids information overload in the cockpit, enabling the aircrew to quickly absorb data and make decisions based on suitably processed and validated information, and rapidly respond to threats in highly contested environments,” he said. McCrory added that Leonardo demonstrated aspects of human-machine teaming recently in a trial organized with the British Army and the MoD's Defence Science and Technology Laboratory, in which a Wildcat helicopter crew tasked a semi-autonomous UAV provided by Callen-Lenz to gather imagery and feed it back to the cockpit display via datalink. “It is these human-machine teaming principles that we will be building upon for Tempest,” he said. As Tempest development proceeds, McCrory said design of the integrated mission system was proceeding in parallel with the design of the aircraft itself. “We are effectively designing the aircraft from the inside out; by this I mean we are working closely with the MoD to understand future sensing, communications and effects capability requirements, and then working with the Team Tempest partners to ensure the aircraft can accommodate and support the required avionic systems.” Leonardo is working with BAE Systems to ensure the airframe will accommodate sensors, with Rolls Royce to ensure there is sufficient powering and cooling for the systems, and with MBDA, said McCrory, “to give weapons the best available data prior to launch, and to keep them informed after they are released and receive data back from them as they progress towards the target.” https://www.c4isrnet.com/home/2021/01/15/secrets-of-tempests-ground-breaking-radar-revealed/

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