Navy Awards Contract for 9 E-2D Aircraft for Japan
An E-2D Hawkeye prepares to launch from the flight deck of the Nimitz-class aircraft carrier USS Abraham Lincoln. The Navy has ordered nine of the aircraft for Japan. U.S. Navy/Mass Communication Specialist 3rd Class Amber Smalley
ARLINGTON, Va. — The Navy has ordered nine E-2D Advanced Hawkeye from Northrop Grumman Systems Corp. for the government of Japan.
According to a Sept. 26 Defense Department contract announcement, Naval Air Systems Command awarded to Northrop Grumman Systems Corp. a $1.36 billion firm fixed-price contract modification for the production and delivery of the nine E-2Ds. The contract was awarded under Foreign Military Sales.
Earlier, in May 2019, Northrop Grumman delivered the first of four E-2Ds ordered under a 2014 contract.
The E-2Ds will equip the Japanese Air Self-Defense Force, which currently operates the older E-2C version.
The E-2D features the Lockheed Martin APY-9 radar with a two-generation leap in capability and upgraded aircraft systems that improve supportability and increase readiness. Another notable upgrade is the glass cockpit. The three 17-inch liquid crystal display panels enable either the pilot or co-pilot to become a fourth tactical operator — when not actively engaged in flying the aircraft — to give the crew more flexibility in performing its diverse missions.
Raytheon Demonstrates Unmanned Single-Sortie Mine Sweeping for Navy
The AQS-20C mine-hunting sonar in action at the U.S. Navy’s ANTX 2019. Raytheon
ARLINGTON, Va. — Raytheon has demonstrated the ability to detect and identify a mine-like object and position an unmanned underwater vehicle to be in position to neutralize it, a company official said on Sept. 26.
The Aug. 29 “detect to engage” demonstration was one event in the Navy’s ANTX (Advanced Naval Technology Exercise) 2019 held at Newport, Rhode Island.
“We view it as a tremendous success,” Andy Wilde, director of strategy and business development for Raytheon Undersea, said in an interview with Seapower. He said it was a “great example of the great work the Navy and industry can do when we co-invest in critically important projects like this to solve very, very difficult problems.”
Wilde cited the success as an example of a “high-velocity outcome” of a “best-of-breed” technology being rapidly prototyped and tested and able to be fielded very quickly, a process championed by former Chief of Naval Operations John M. Richardson.
Raytheon’s AQS-20C towed sonar was pulled through the water by a surplus riverine craft acting as a surrogate for the Textron-built MCM unmanned surface vehicle (MCMUSV) that will be a component of the MCM mission package for the littoral combat ship (LCS).
Under the concept, an MCMUSV is launched from an LCS and deploys the AQS-20C. Once a possible sea mine is detected by the AQS-20C’s synthetic aperture sonar, a Barracuda expendable semi-autonomous mine neutralization unmanned undersea vehicle is — on the same pass — launched into the water from a A-size sonobuoylauncher on the MCMUSV.
The Barracuda deploys a float that serves as an RF datalink to the CUSV and an acoustic data link to the Barracuda. The tactical mission plan is downloaded from the LCS to the Barracuda via the CUSV. The Barracuda starts a search track and, once it acquires a mine, it maintains position at the mine. The operator on the LCS confirms the object is a mine and commands the Barracuda to detonate the mine with a charge. The MCMUSV would then continue its mission on its planned track.
During the demonstration, the towed AQS-20C detected a mine-like object moored in Narragansett Bay. The surface craft launched a Nemo, the prototype of the Barracuda developed with the Office of Naval Research. The Nemo located the mine-like object and hovered with it, keeping station. Having transmitted imagery of the mine-like object to the control station, the Barracuda was commanded to touch the mine-like object to simulate firing a shaped charge, Wilde said.
Wilde said the Barracuda has station-keeping technology that enables it to remain position to fire the shaped charge at the mine even in currents that cause a moored mine to sift position on its tether.
In an Aug. 15 interview, Wilde said that unmanned systems will revolutionize mine countermeasures (MCM) that currently take weeks or months to clear minefields and put minesweepers at risk. The Navy is developing an MCM mission package for the littoral combat ship that will rely largely on unmanned systems.
He also said the MCM mission concept could be expanded to other missions, including by use of a B-size sonobuoy launcher with other payloads. The AQS-20C sonar is now in production. Raytheon is developing the engineering developmentmodels of the Barracuda and recently completed the Navy’s preliminary designreview.
Wilde said Raytheon is in discussions with the Navy about other missions to which the Barracuda could be applied.
Concerns Over Component Reliability Delay Trident Nuclear Warhead Upgrade
An unarmed Trident II missile launches from the Ohio-class ballistic missile submarine USS Rhode Island off the coast of Florida in May. The planned upgrade of the nuclear warhead on some U.S. Navy sub-launched missiles has been delayed for 18 months by unacceptable reliability of some components. U.S. Navy/John Kowalski
ARLINGTON, Va. — The planned upgrade of the nuclear warhead on some U.S. Navy submarine-launched ballistic missiles (SLBMs) has been delayed for 18 months by unacceptable reliability of some components.
Testifying Sept. 25 on Capitol Hill before the House Armed Services Committee’s subcommittee on strategic forces, Charles P. Verdon, deputy administrator for defense programs for the National Nuclear Security Administration (NNSA), said that during stress tests to certify some electrical components of the weapons, some capacitors for the Navy’s W88 Alteration 370 warhead for the Trident D5LE SLBM and the Air Force’s B61 Mod 12 nuclear bomb did not meet the stringent reliability requirements. The capacitors were commercial-off-the-shelf (COTS) components.
Verdon said a blue-ribbon panel established by NNSA formed to study the matter “advised in June 2019 that the prudent approach was to accept the delay of these programs and replace these components rather than risk component failure in future years.”
The recommendations were accepted by NNSA at that time, Verdon said, noting that NNSA is developing a specific production schedule and initial operational capability dates are being explored.
Verdon said the capacitor of insufficient reliability was a $5 part, whereas the replacement capacitor — being built to a new standard that did not exist at the time the original capacitors were procured — cost $75. Although the figures for program delays are not yet final, he said the delay would cost NNSA an additional $120 million to $150 million for the W88 Alt 370 and $600 million to $700 million for the B61 bomb.
Verdon also said the additional costs could be mitigated by balancing the workload within NNSA’s modernization portfolio. He said that any increase in funding would not be needed until fiscal 2021.
Vice Adm. Johnny Wolfe, the Navy’s director of strategic systems programs, also testifying before the committee, said the upgrades for the W88 Alt 370 begun in 2008 focused on procuring the arming, fuzing and firing units and replacing the warhead’s high explosives. He said the installation of the Alt 370 was delayed to a start of December 2019, “removing any schedule margin for the refurbishment effort.”
He said the Navy and NNSA are planning for about an 18-month delay to the Alt 370 program and that the Navy is working with the ballistic-missile submarine fleet’s operational commander, U.S Strategic Command, to mitigate the effect of the delays and ensure that the nation’s strategic requirements are met on schedule.
“We will meet the requirements as we move forward,” Wolfe said.
Verdon said that “[a]s a root cause, we identified that our methodology for the insertion of COTS components into high-reliability, long-life nuclear warheads needs to be improved” to avoid such future delays.
He said the NNSA “underestimated the variability between lots” in COTS-procured capacitors.
A closed classified session was held by the subcommittee following the open hearing.
Navy’s Sea Hunter USV Showcased in Major Project Demonstration
Sea Hunter pulls into Joint Base Pearl Harbor-Hickam, Hawaii, last year. The unmanned ship was recently featured in a major demonstration using an advanced sensor. U.S. Navy/Mass Communication Specialist 1st Class Corwin M. Colbert
RESTON, Va. — Leidos’ unmanned ship, Sea Hunter, was recently featured in a major demonstration using an advanced sensor, the company said in a Sept. 19 release.
The new milestone comes less than a year after the ship voyaged from San Diego to Hawaii with no personnel on board. Including the return trip, this transit covered about 5,000 nautical miles.
The Office of Naval Research project was supported by the Naval Information Warfare Center-Pacific, Naval Undersea Warfare Center-Newport and Johns Hopkins Applied Physics Laboratory to explore how unmanned vehicles can be used as a naval force multiplier and allow warships to be available for other missions.
The exercise also showcased the open architecture and flexibility of Sea Hunter, which has hosted a variety of mission payloads, including airborne sensors.
“This exercise offered valuable lessons learned on how to take full advantage of a medium unmanned surface vehicle, with no personnel on board,” said Nevin Carr, Leidos Navy’s strategic account executive. “Autonomous vessels, especially when combined with artificial intelligence, have the potential to impact naval warfare in ways yet to be discovered.”
Navy Official: Amphibs Provide Presence, Reassurance, Deterrence
The Navy’s amphibious ships and their embarked Marines, aircraft and landing craft — like this one leaving the well deck of the amphibious assault ship USS Wasp — provide an array of power that can influence world events and reinforce U.S. interests in a region, a Navy official says. U.S. Navy/Mass Communication Specialist Seaman Apprentice David Glotzbach
QUANTICO, Va. — The Navy’s amphibious ships and their embarked aircraft, landing craft and Marines provide an array of power that can influence world events and reinforce U.S. interests in a region, a Navy official said, listing five roles of the forces.
The primary purpose of an amphibious ready group (ARG) is to provide a means for a Marine Air-Ground Task Group to conduct amphibious assault, Frank DiGiovanni, deputy director of expeditionary warfare, Office of the Chief of Naval Operations, last week at the Modern Day Marine expo at Marine Corps Base Quantico, Virginia.
DiGiovanni said the second role was presence, noting that “[t]he fact that you have a three-ship ARG with a bunch of firepower on it and 2,000 Marines” tells nations in the region that the power of the United States is present, “that there is someone else here, too.”
Third, he said, is reassurance.
“The people in this region need to know the United States of America is on watch, and we have combat capability within our reach,” DiGiovanni said.
Deterrence is the fourth role, one that discourages aggression from nations intent on aggression or harassment.
The fifth is logistics.
DiGiovanni mentioned “not only the logistics to support the Marines ashore by the ship to shore, but once that ship is empty, and the Marines are being sustained, what should we do with those ships? Do they serve a purpose to support other logistics needs, particularly in a contested environment? It’s a hypothesis we’re thinking about it.”
Boeing MQ-25 Unmanned Aerial Refueler Completes First Test Flight
Boeing and the U.S. Navy successfully completed the first test flight of the MQ-25 unmanned aerial refueler on Sept. 19. Boeing
ST. LOUIS — Boeing and the U.S. Navy on Sept. 19 successfully completed the first test flight of the MQ-25 unmanned aerial refueler, according to a company release.
The MQ-25 test asset, known as T1, completed the autonomous two-hour flight under the direction of Boeing test pilots operating from a ground control station at MidAmerica St. Louis Airport in Mascoutah, Illinois, where the test program is based. The aircraft completed an autonomous taxi and takeoff and then flew a pre-determined route to validate the aircraft’s basic flight functions and operations with the ground control station.
“Seeing MQ-25 in the sky is a testament to our Boeing and Navy team working the technology, systems and processes that are helping get MQ-25 to the carrier,” Boeing MQ-25 Program Director Dave Bujold said. “This aircraft and its flight test program ensures we’re delivering the MQ-25 to the carrier fleet with the safety, reliability and capability the U.S. Navy needs to conduct its vital mission.”
The Boeing-owned test asset is a predecessor to the engineering development model (EDM) aircraft and is being used for early learning and discovery to meet the goals of the Navy’s accelerated acquisition program. Boeing will produce four EDM MQ-25 air vehicles for the Navy under an $805 million contract awarded in August 2018.
The MQ-25 will provide the Navy with a much-needed carrier-based unmanned aerial refueling capability. It will allow for better use of the combat strike fighters currently performing the tanking role and will extend the range of the carrier air wing.
“Today’s flight is an exciting and significant milestone for our program and the Navy,” said Capt. Chad Reed, the Navy’s unmanned carrier aviation program manager. “The flight of this test asset two years before our first MQ-25 arrives represents the first big step in a series of early learning opportunities that are helping us progress toward delivery of a game-changing capability for the carrier air wing and strike group commanders.”
T1 received its experimental airworthiness certificate from the FAA in September, verifying that the air vehicle meets the agency’s requirements for safe flight. Testing will continue with T1 to further early learning and discovery that advances major systems and software development.
Navy Considering Marine CAC2S System for Amphibs to Exploit Strike Fighter’s Capabilities
F-35Bs conduct flight operations aboard the amphibious assault ship USS Wasp. Navy officials say the service is considering installing a modern Marine Corps command and control system on amphibs to take advantage of the F-35’s capabilities. U.S. Navy/Mass Communication Specialist 1st Class Daniel Barker
QUANTICO, Va. — Navy officials said the service is considering installing a modern Marine Corps command and control system on large-deck amphibious assault ships.
“The Navy is looking to purchase CAC2S [Common Aviation Command and Control System] and put those on L-class ships so that they can do some of the same things we do on L-class ships the CAC2S can pull down off an F-35. It will help build situational awareness for the SWOs [surface warfare officers] on the ship,” said Col. Kurt Schiller, director, Air Combat Element/Maritime Expeditionary Warfare Division in the Capabilities Development Directorate, speaking at a panel discussion sponsored by the Amphibious Warfare Industrial Base Coalition at the Modern Day Marine expo at Marine Corps Base Quantico, Virginia.
CAC2S, built by General Dynamics Mission Systems, provides a complete and coordinated modernization of Marine Air Command and Control System (MACCS) equipment.
CAC2S provides the MAGTF Aviation Combat Element with the hardware, software and facilities to effectively command, control and coordinate air operations integrated with naval, joint and/or combined C2 units.
CAC2S is made up of standardized modular and scalable tactical facilities, hardware and software to significantly increase battlefield mobility and reduce the physical size and logistical footprint of the MACCS.
“The F-35B brings extraordinary situational awareness capability,” Frank DiGiovanni, deputy director, Expeditionary Warfare, said during the panel discussion. “The CAC2S that the colonel was talking about brings the ground common operational picture to the ship and to the rest of the Navy.”
BAE’s San Diego Shipyard to Tandem Dry-Dock Two Destroyers
USS Stethem and USS Decatur will dry-dock together in San Diego inside the “Pride of California.” BAE Systems
SAN DIEGO — BAE Systems
has received $170.7 million in contracts from the U.S. Navy to perform
simultaneous maintenance and repair on two Arleigh Burke-class guided-missile
destroyers in its shipyard here, according to a Sept. 18 company release.
The shipyard will tandem
dry-dock the USS Stethem (DDG-63) and USS Decatur (DDG-73) in October. The
synchronized two-ship docking will be a first for the company’s newest dry-dock
in San Diego. The contracts include options that, if exercised, would bring their
cumulative value to $185 million.
“The ability to simultaneously dock two
DDGs is a special capability that BAE Systems brings to our Navy customer and
comes at a critical time when additional throughput is necessary to meet
surface combatant demands and modernization requirements,” said David M. Thomas
Jr., vice president and general manager of BAE Systems San Diego Ship Repair.
https://www.youtube.com/watch?v=RkLmRZTaeyg
“Beyond the remarkable nature of this
tandem docking, it will be business as usual for our shipyard team and partners
given our significant experience working with the Arleigh Burke class.”
Positioned end to end, the Stethem and Decatur
will be lifted together inside BAE’s “Pride of California” dry-dock. Installed
in 2017, the dry-dock is 950 feet long, 160 feet wide and has a lifting
capacity of 55,000 tons — making it the largest floating dry-dock in San Diego.
The destroyers each displace about 9,000 tons and are expected to be refloated next
April.
The Stethem is the 13thship
of the Arleigh Burke class, which is the Navy’s largest class of surface
warfare combatants. Named for Master Chief ConstructionmanRobert Stethem, the
505-foot-long ship was commissioned in October 1995. BAE Systems will perform
hull, mechanical and engineering repairs aboard the ship. Once back in the
water, the Stethem’s Extended Docking Selected Restricted Availability (EDSRA)
is expected to be completed in October 2020.
The Decatur is the 23rd ship of the Arleigh Burke class. Named for the early 19th-century Naval hero Stephen Decatur Jr., the ship was commissioned in August 1998. BAE Systems will perform much of the same upgrade work aboard the 505-foot-long Decatur as it will perform on board the Stethem.
After undocking, the Decatur’s EDSRA work is expected to continue into October 2020. BAE Systems’ San Diego shipyard currently employs about 1,300 people and hundreds of temporary workers and subcontractors nearby the San Diego-Coronado Bridge.
Navy Accelerates Cloud-Based Warfare Systems
An SM-2 missile launches from the guided-missile cruiser USS Mobile Bay during a test of an AEGIS weapons system in 2017. Earlier this year, the Navy successfully tested ATRT as part of the AEGIS Virtual Twin project — which involved the tactical deployment of a virtualized AEGIS system as a digital twin to the existing physical one. U.S Navy/Mass Communication Specialist 1st Class Chad M. Butler
ARLINGTON, Va. — As conflicts become compressed in time and more complex, with an increasing number of data sources and platforms feeding information to warfighters, it is a challenge to build and share a complete and accurate operational picture.
To address this issue and align with the chief of naval operations’ concept for distributed maritime operations, the Office of Naval Research (ONR) and the U.S. Navy’s Small Business Innovation Research (SBIR) program are sponsoring the development of a cloud-computing environment called Cloud-to-Edge (CTE), according to an ONR release.
By harnessing the power of cloud computing and big-data fusion, the CTE environment will enhance the agility and responsiveness of naval warfighters.
The CTE environment is designed for use by Sailors and Marines across land, sea and air domains. It enables secure combat system development; automated software testing and analysis; and scalable simulation. It also improves readiness, through extensive pre-mission training, feedback and assessment, and enhances operational information-gathering and decision-making.
“This is a great example of ONR partnering with Navy SBIR to fill a technology gap, by helping companies transition and commercialize their technologies at scale.”
ONR Executive Director E. Anne Sandel
The goal is to enable the Navy to make software changes (without requiring additional authorities) and assess the performance of CTE environments either on single vessels or within larger carrier strike groups and against a variety of mission scenarios. The result will be certified software, deployable by the Navy on demand, for all carrier strike groups.
ONR Executive Director E. Anne Sandel said, “This is a great example of ONR partnering with Navy SBIR to fill a technology gap, by helping companies transition and commercialize their technologies at scale.”
“An important step in getting the CTE environment to the fleet is ONR’s work with Navy SBIR to accelerate technology development by partnering with small businesses,” SBIR Director Bob Smith added.
The key component of the CTE environment is the Automated Test and Re-Test (ATRT) system, which delivers software-driven capabilities to the warfighter as quickly as possible. Virginia-based company Innovative Defense Technologies (IDT) developed ATRT after receiving SBIR funding to design technology that would promote rapid integration, testing and certification of new and updated software.
Earlier this year, the Navy successfully tested ATRT as part of the AEGIS Virtual Twin project — which involved the tactical deployment of a virtualized AEGIS Weapon System as a digital twin to the existing physical one.
The virtual twin contains all the computer code used by the existing AEGIS Weapon System. Made up of multiple computer servers, it occupies a relatively small amount of space aboard a ship, does not interfere with the ship’s combat systems and is ideal for training and software testing.
Several AEGIS Virtual Twin systems were demonstrated on the USS Arleigh Burke, USS Ralph Johnson and USS Thomas Hudner. During the tests aboard the Thomas Hudner, the Virtual Twin executed a successful anti-air warfare engagement (operating as the tactical system) and demonstrated the capability to test and deploy a software update in less than 24 hours.
James Geurts, assistant secretary of the Navy for research, development and acquisition, described the tests as a pathway to revolutionize the speed at which the Navy can modernize current systems and keep pace with future threats.
“Success stories like IDT, ATRT and CTE environment demonstrate how the Navy leverages the expertise of small businesses to enable technology adoption at the pace of innovation,” Smith said. “Companies that do business with SBIR are helping to strengthen America’s naval advantage for years to come.”
Navy Shallow-Draft LCS Increases U.S. Access, Presence in Southeast Asia
The USS Montgomery steams in the Gulf of Thailand during an exercise as part of AUMX. The first AUMX, co-led by the U.S. and Royal Thai navies, includes maritime forces from the U.S. and all 10 ASEAN member states. U.S. Navy/Mass Communication Specialist 1st Class Greg Johnson
ARLINGTON, Va. — When the littoral combat ship (LCS) USS Montgomery (LCS 8) visited Davao City, a port on the Philippine island of Mindanao, earlier this summer, it was the first port call there of a U.S. Navy ship in who knows how long.
Speaking to reporters Sept. 11 in a media roundtable teleconference, Cmdr. Edward A. Rosso, commanding officer of the ship’s Blue Crew, was making the point that the LCS, with its shallow draft, allows the Navy to make port calls in locations that would not accommodate larger vessels such as destroyers, cruisers and amphibious warfare ships.
The draft of the aluminum trimaran-hull, Independence-variant Montgomery is 15.1 feet, compared with the 30.5-foot draft of an Arleigh Burke-class destroyer.
“The U.S. Navy, along with our partners and allies, has long known the importance and value of working together, and from my perspective, that is exactly what Montgomery has done during this deployment,” Rosso said. “We began our time in theater with a historic port visit to Davao City in the Philippines. It perfectly suited to receive our shallow-hull littoral combat ship. This was the first visit by a U.S. warship to that location in recent memory.”
“It was a great opportunity to build relationships, learn from one another, improve interoperability, and appreciate culture,” he added. “Overall, port visits like this allow us to demonstrate our commitment to maritime security in the region while strengthening relationships with our friends, partners and allies.”
The Montgomery is the first rotational deployment to the Western Pacific of an LCS in 18 months and is the first of three LCSs the Navy plans to deploy this year.
The last LCS to deploy, USS Coronado (LCS 4), returned from the western Pacific on Dec. 5, 2017. It had been preceded by the USS Freedom (LCS 1) and its Freedom-class sister ship, USS Fort Worth (LCS 3), in 2015 and 2016, respectively.
During the deployment, Montgomery participated in the 25th annual CARAT (Cooperation Afloat Readiness and Training) exercise and the ASEAN-US Maritime Exercise (AUMX).
“Co-led by the U.S. and Royal Thai navies, AUMX consisted of pre-sail activities in Thailand, Singapore and Brunei, followed by a sea phase in international waters of Southeast Asia, including the Gulf of Thailand and South China Sea,” a Navy release said. “It concluded in Singapore. Participating nations included Brunei, Cambodia, Indonesia, Laos, Malaysia, Myanmar, Philippines, Singapore, Thailand, United States and Vietnam. AUMX included eight warships and four aircraft from seven countries, and more than one thousand personnel representing all ten ASEAN member states and the United States.”
The Montgomery deployed with the Surface Warfare Mission Package, including an MH-60S helicopter and an MQ-8B Fire Scout unmanned aerial vehicle.
Rosso praised the value of the LCS Maintenance Support Team deployed to Singapore to support LCS deployments to the area. The team can stage to various ports in the region to rapidly respond to maintenance needs of a deployed LCS. In one such response, the team made a major repair at Sattahip, Thailand.
He also praised his crew, of which he said, “The things on this ship wouldn’t have happened without my crew,” whom he called “100 people of excellence.”