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August 5, 2024 | International, Aerospace

Transforming war: A strategic integration of unmanned aerial systems

Opinion: Medal of Honor recipient and AE Industrial Vice President Florent Groberg discusses how unmanned aerial systems are reshaping modern battlefield dynamics.

https://www.defensenews.com/opinion/2024/08/05/transforming-war-a-strategic-integration-of-unmanned-aerial-systems/

On the same subject

  • Economics Of Rocket Reuse Still Up In The Air

    April 16, 2020 | International, Aerospace

    Economics Of Rocket Reuse Still Up In The Air

    Irene Klotz The first Falcon 9 rocket to land successfully after dispatching a payload into orbit stands on permanent display outside SpaceX headquarters in Hawthorne, California, a testament to the perseverance of founder, CEO and chief engineer Elon Musk, who wants a fleet of fully reusable spaceships to reduce the cost of colonizing Mars. The vision is shared by fellow tech entrepreneur Jeff Bezos, whose Kent, Washington-based Blue Origin space company is developing a series of reusable vehicles, beginning with the New Shepard suborbital passenger transport system. The New Shepard made 12 uncrewed flight tests over the last five years, with more to come before commercial flights begin. Bezos also has pumped $2.5 billion into developing the New Glenn, a reusable system powered by seven BE-4 methane-fueled engines designed to carry nearly 50 tons to low Earth orbit. “That is the smallest orbital vehicle we are planning to build and launch,” says Clay Mowry, Blue Origin vice president of sales, marketing and customer experience. But the first BE-4s to power a rocket to orbit may not be aboard the New Glenn. United Launch Alliance (ULA) is buying the engines to power the first stage of its Vulcan rocket, an expendable booster—at least for now—which, like the New Glenn, is slated to debut next year. At some point, ULA may decide to recover and reuse just the BE-4 engines, a pair of which will fly on each Vulcan. The idea is for the engine compartment to disengage after launch and fall back through the atmosphere protected by an inflatable hypersonic shield. A helicopter would be positioned to snag the engine section midair as it makes a parachute descent. ULA calls the approach its Sensible Modular Autonomous Return Technology, or SMART. “It does not impact, in any significant way, the overall performance of the launch vehicle because you don't have to save fuel to fly home with,” ULA CEO Tory Bruno tells Aviation Week. “You still get to burn up all your fuel, separate your engine, which is the most expensive piece, and recover it.” “We have not really changed our assessment over the last couple of years because we have yet to see the other forms of reusability—flyback or propulsive return to Earth—demonstrate economic sustainability on a recurring basis,” Bruno says. “It's pretty darn hard to make that actually save money. . . . We've seen nothing yet that changes our analysis on that.” SpaceX currently is the only launch company reflying orbital rockets. SpaceX launched its final version of the workhorse Falcon 9 booster, called the Block 5, in May 2018. Within two months, the company was flying Block 5s exclusively. The upgrade includes higher-thrust Merlin engines, stronger landing legs and dozens of upgrades to streamline recovery and reuse. Block 5s were designed to fly 10 times with minimal maintenance between flights, and up to 100 times with refurbishment. SpaceX President and Chief Operating Officer Gwynne Shotwell says the company no longer expects to need to fly a Falcon 9 more than 10 times. “We don't have to ramp up our production, at least for boost phases, like we thought we were going to,” Shotwell said on March 10 at the Satellite 2020 conference in Washington. “From a reliability perspective, we want to know the limits of Falcon 9, so we'll push them, but . . . some government customers want new vehicles—I think over time, they will come to flight-proven vehicles as well,” she added. “But if I have to build a couple of new ones every year, or 10 new ones a year, that adds to the fleet, and I don't know that I'll have to push a rocket more than 10 [flights.]” With regard to how much the company has been able to cut costs by reflying rockets, Shotwell would only say, “We save a lot of money.” As a privately held company, those operating expenses are not publicly available, but the Block 5 flight record is. So far, SpaceX has flown 14 Block 5 core boosters over 31 missions, including two Falcon Heavy flights, which use three cores apiece. Of those 14 boosters with flight history, five remain part of the operational fleet. The rest were expended—several after multiple missions—due to payload performance requirements or unsuccessful landings. One booster was intentionally destroyed as part of a Crew Dragon capsule launch abort flight test. SpaceX's fleet leader flew five times before failing to land on a drone ship stationed off the Florida coast on March 18. SpaceX has not said if the botched landing was related to a premature engine shutdown during the final phases of ascent. The rocket's remaining eight Merlin engines compensated for the shutdown, and the payload—a batch of 60 SpaceX Starlink broadband satellites—reached its intended orbit. While it continues to fly the Falcon 9 and Falcon Heavy for NASA, national security and commercial missions, SpaceX is developing a fully reusable, human-class deep-space transportation system called Starship at its own expense. Another company testing the waters of reusability is Rocket Lab, which builds and flies the Electron small-satellite launcher. “For a long time, I said we weren't going to do reusability,” Rocket Lab CEO Peter Beck said in August 2019, when he announced the new initiative. “This is one of those occasions where I have to eat my hat.” Electrons do not have the performance for a propulsive return like SpaceX's Falcons do, so Rocket Lab is pursuing a midair, helicopter recovery system to snare the booster's first stage. The intent is not to reduce costs per se but to increase flight rates without having to boost production. The company currently is producing one Electron rocket about every 30 days. “We need to get that down to one a week,” Beck says. “We view [rocket reuse] as sort of a journey,” ULA's Bruno adds. “We're going to start with the engines because we're pretty sure we can save money with that and pass those savings on right away. As we learn more by doing, we'll continue to assess other valuable parts of the rocket, and we may discover that we can do that there as well.” “There is one funny thing about reusability,” he adds. “As you make your rocket less expensive, and you make parts of your rocket less expensive, it's harder to close a business case on reuse because the thing you're recovering isn't as valuable. There's a balance there.” https://aviationweek.com/shows-events/space-symposium/economics-rocket-reuse-still-air

  • Raytheon rebrands as RTX

    June 20, 2023 | International, Other Defence

    Raytheon rebrands as RTX

    The name change is the latest of several adjustments undertaken by the military tech company in recent years.

  • Submarines are poised to take on a major role in strike warfare, but is that a good idea?

    October 29, 2019 | International, Naval

    Submarines are poised to take on a major role in strike warfare, but is that a good idea?

    By: David B. Larter WASHINGTON — The U.S. Navy is preparing to ink one of the largest contracts in its history with General Dynamics Electric Boat and the firm's partner shipyard Huntington Ingalls Industries Newport News that will make the new generation of attack submarines a major force in strike warfare. The Block V Virginia contract is expected to produce 11 boats with eight Virginia Payload Modules, and will triple the Virginia's Tomahawk Land Attack Missile capacity to 40 missiles per hull. Experts say that the new Virginia Payload Module will also be large enough to accommodate boost-glide hypersonic missiles like those the Navy is developing with the Army. But the logic for the Virginia Payload Module has always been about replacing the Ohio-class guided missile submarines retiring in the 2020s. Because submarines have been the Navy's go-to asset to penetrate areas threated by Chinese and Russian surface-to-surface and anti-ship missiles, attack submarines loaded with strike missiles would have to be the ones to get close enough to be able to launch land-attack strikes. That model upends decades of the surface Navy's supremacy in the world of strike warfare from the sea, but experts are beginning to question the logic of giving the strike warfare mission to submariners in an era of great power competition. With Russia and, to an even greater extent, China investing heavily in anti-submarine technology, does it make sense to give a stealthy asset a mission that will blow its cover? Bryan Clark, a retired submariner and senior fellow at the Center for Strategic and Budgetary Assessments, wonders if the surface fleet is the best place inside the force to house the strike mission. “I think the requirement may be changing,” he said in an Oct. 22 phone call with Defense News. “Over the past 10 years there has been a real emphasis on the submarine as the one tool we have that may be able to get into contested areas — the East and South China seas, up in the north Atlantic, etc. “That's changing now: These countries are investing in their own anti-submarine warfare systems. China has put a lot of money into ASW systems, they are installing surveillance systems akin to our SOSUS [sound surveillance system]. So the idea that our submarines are our go-to asset to gain access, that may not be true in the next few years as it was in the past 10, so there is a question as to whether we should be investing in submarines to maintain the undersea strike capacity.” ‘Increasingly vulnerable' The issue is not just that submarines run the risk of being detected, which is an ever-present risk anytime a submarine leaves the pier, but that it won't be able to create the volume of fires that the surface fleet could, especially with new concepts in development such as a large unmanned surface vessel that could act as a kind of arsenal ship. “The surface fleet is likely going to be our best strike capacity asset in the next decade,” Clark said. “Submarines are going to be increasingly vulnerable, so the question becomes: Do I want to take my [Virginia Payload Module]-equipped SSN, put it inside the South China Sea to launch strikes, get counter-detected and harassed for days afterward? I lose it from the fight for a long time just evading attacks. “Whereas if you used unmanned surface vessel[s], those can launch just as many cruise missiles as a Virginia class, many times cheaper; they can rotate, get reloaded and just keep launching strikes at a much higher rate of fire as you would ever get out of the SSN force.” Jerry Hendrix, a retired naval flight officer and analyst with The Telemus Group, agreed that the surface fleet is likely going to be the place to house a strike capability, especially in the era of mass hypersonic fires, because of the cost it would impose on the U.S. to try to match Chinese capabilities on subs. “I think there is a powerful argument to distribute these weapons across the surface force,” Hendrix said. “If you can create a strike weapon that allows the surface force to stand outside of DF-21 and DF-26 range and shoot three-pointers from outside, then yes. To create mass and volume in the submerged force is twice to three times as expensive as it is to create that volume from the surface force. “So there is a solid argument just from the standpoint of cost. If I was trying to create 2,000 tubes of hypersonics — which are much more massive than Tomahawks, wont fit into a Mark 41 vertical launch system and hence will have to go into a different configuration — to create that mass in the submerged force is going to be very expensive.” The Navy is looking at back-fitting destroyers with larger vertical launching system tubes to accommodate so-called prompt-strike weapons, Defense News reported in June. But some analysts say the mission is better suited for a large unmanned surface vessel. “I think this is going to one of the main things driving the design of the large unmanned surface combatant,” said Dan Gouré, an analyst at the Lexington Institute think tank. “We're back to arsenal ship: long-range, park it into a surface action group of carrier strike group — kind of like a surface version of the SSGN.” https://www.defensenews.com/naval/2019/10/28/submarines-are-poised-to-take-on-a-major-role-in-strike-warfare-but-is-that-a-good-idea/

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