Back to news

April 14, 2020 | International, Aerospace

Space Force picks launch provider for 44 technology demonstration satellites

Nathan Strout

VOX Space will launch 44 technology demonstrator satellites into orbit for the U.S. Space Force, the Space and Missile Systems Center announced April 10.

Under the $35 million task order, VOX Space, a wholly owned subsidiary of Virgin Orbit, will provide launch services for Space Test Program-S28 (STP-S28), an effort to put demonstrator satellites on orbit to test and develop new space situational awareness and communications technologies for the military.

VOX Space will launch the 44 small satellites into low earth orbit using three of their LauncherOne rockets. Unlike traditional launches where the rockets start from a vertical position on a pad, the LauncherOne rockets are launched in midair from a Boeing 747 aircraft. The first launch is tentatively slated for October 2021.

While four companies are battling for five years of contracts under the National Security Space Launch effort, which will place the country's large exquisite satellites on orbit, the U.S. military and the intelligence community have looked to exploit the growing commercial small launch market under new contracting mechanisms.

For instance, the National Reconnaissance Office has begun using its new “rapid acquisition of a small rocket” contract vehicle in 2020, successfully launching its first payload under that program with Rocket Lab in January. A second planned launch with Rocket Lab slated for March was delayed due to the COVID-19 situation.

The VOX Space award is the first task order under Orbital Services Program-4 — an indefinite delivery, indefinite quantity contract awarded to eight companies by the Space and Missile Systems Center in October.

OSP-4 is a follow-on to OSP-3, which expired in November. Like it's predecessor, OSP-4 is the Defense Department's effort to leverage the growing commercial small launch market to put government payloads on orbit. The program enables the launch of payloads greater than 400 pounds to any orbit within 12-24 months after a task order is awarded. Last year, the Air Force said it expected to use OSP-4 to launch 20 missions over a nine-year period.

“The competitive award of the STP-S28 task order is a prime example of the flexible and responsive contracting processes the Launch Enterprise is using to deliver resilient and affordable space capabilities to our Nation,” said Col. Rob Bongiovi, director of SMC's Launch Enterprise Systems Directorate. “In today's contested space domain, contracts must be flexible and responsive to meet the challenges facing the warfighter. I'm proud of the work the Small Launch and Targets Division accomplished in awarding the STP-S28 task order in only five months using the OSP-4 contract.”

https://www.c4isrnet.com/battlefield-tech/space/2020/04/13/space-force-picks-launch-provider-for-44-technology-demonstration-satellites/

On the same subject

  • Lockheed Martin Skunk Works®’ Project Hydra Demonstrates 5th Gen To 5th Gen Communications Across Domains

    May 5, 2021 | International, C4ISR

    Lockheed Martin Skunk Works®’ Project Hydra Demonstrates 5th Gen To 5th Gen Communications Across Domains

    Named Project Hydra, the latest flight test leveraged an Open Systems Gateway payload aboard the U-2 to connect an F-22 to five F-35s via native Intra-Flight Data Link and Multifunction Advanced...

  • Here’s how Air Mobility Command will improve aircraft survivability

    September 24, 2018 | International, Aerospace, C4ISR

    Here’s how Air Mobility Command will improve aircraft survivability

    By: Charlsy Panzino In a great power conflict, mobility aircraft will be essential to deliver fuel and supplies to the warfighters. But increasing concern over anti-access/area denial threats from potential foes, and the fact that big bodied mobility aircraft present inviting, in fact, critical targets has the attention and concern of Air Force leadership. The new head of Air Mobility Command is focusing on four key areas to improve the survivability of mobility aircraft and gain persistence over the battlefield. Gen. Maryanne Miller, who took the controls Sept. 7 when Gen. Carlton Everhart retired, told reporters at the Air Force Association's annual Air, Space and Cyber Conference that the Illinois-based command is looking at four categories of survivability improvements: Situational awareness of the battlefield New countermeasures to operate in a combat environment Self-defense systems Disciplined signature management “Looking at each one of these categories will help advance the survivability for our platforms in the threat environment,” Miller said Tuesday. Miller is carrying forward work that was done under her predecessor. Early this year, AMC completed an assessment about how to improve the survivability of aircraft in contested environments. The “High Value Airborne Asset” study recommended improvements to communications, situational awareness and self-protection systems. There are many different technologies to consider and develop for self-protection. including light armor, signature management tech and high-energy lasers. Former AMC commander Gen. Carlton Everhart often talked about his desire to put lasers on mobility aircraft, beginning with the KC-135, and the command has also been working to improve secure communications, notably on the C-17. The service needs integrated situational awareness capabilities that provide all aspects of pertinent battlefield information. New sensors will help the command better understand everything that's happening within the battlefield. As Air Mobility Command looks at how best to build that situational awareness, it could mean building sensors onto the aircraft or new air frames to meet those requirements. “Given the threat environment, it's probably a little bit of both,” Miller said. With signature management, or detection avoidance, Miller said AMC is looking at new air frames that will have common cockpits, advanced propulsion systems, payload, offload, range, speed and fuel efficiency. Miller said the command is figuring out if modifications can be made on current air frames or if new ones need to be built. “We're really trying to take advantage of signature management properties associated with each air frame itself,” she said. Meanwhile, U.S. Transportation Command and the Cost Assessment and Program Evaluation organization within the Office of the Secretary of Defense have been assessing the number of tanker aircraft, airlift aircraft and sealift ships needed to meet future combatant commander requirements. The study, known as the Mobility Capabilities and Requirements Study, is expected to be completed this fall. “America's air refueling fleet is the most stressed of our air mobility forces," Gen. Darren McDew, commander of USTRANSCOM, told the House Armed Services Committee earlier this year. “The combination of an aging fleet, increasing demand, and global tanker distribution puts a significant strain on this scarce national resource.” “Our ability to deploy decisive force is foundational to the National Defense Strategy. The size and lethality of the force is of little consequence if we can't get it where it needs to go when we want it there,” said McDew. The rate of change in technology requires quick innovation to overcome threats, Miller said. The force needs aircraft that are “able to survive, integrate and operate in DoD forces in current and future threat environments.” Miller said the key is understanding the threats of the future and modifying or building a plane that allows the Air Force to operate through that threat environment. https://www.airforcetimes.com/news/your-air-force/2018/09/22/heres-how-air-mobility-command-will-improve-aircraft-survivability

  • US arms exports hit record high in fiscal 2023

    January 29, 2024 | International, Land, Security

    US arms exports hit record high in fiscal 2023

All news