Satellite

New Large Chinese Submarine With Very Unique Feature Just Caught On Satellite Imagery

A new type of submarine that appears to lack a traditional sail has emerged in China. The same shipyard launched a smaller ‘sailless’ submarine — a technology demonstrator — eight years ago. More recently, a top Chinese shipbuilding conglomerate put forward a concept for an uncrewed underwater vehicle (UUV) with a broadly comparable hullform. Designs of this kind can offer benefits in terms of speed, maneuverability, and reduced acoustic signature, but also have major drawbacks.

TWZ has obtained imagery of the submarine in question at JN (Jiangnan) Shipyard in Shanghai on June 1, as seen at the top of this story and below, from Vantor (previously Maxar Technologies). The boat, the name and/or designation of which are currently unknown, first appeared there sometime at the end of May, according to Naval News. That outlet was first to report on this development.

A look at the new submarine at JN Shipyard in Shanghai on June 1, 2026. Satellite image ©2026 Vantor
A broader view of JN Shipyard on June 1, 2026. Satellite image ©2026 Vantor

From the imagery, the submarine does not have a traditional sail. However, the exact shaping of what is present is also not entirely clear from the view that is currently available. As noted, JN Shipyard is known to have built at least one other ‘sailless’ submarine in the past, which we will come back to later on.

Another look at the newly emerged submarine at JN Shipyard. Satellite image ©2026 Vantor
A picture of the low-profile submarine that JN Shipyard launched in 2018. Chinese internet

Writing for Naval News, undersea warfare analyst H.I. Sutton has assessed the design to be roughly 394 feet (120 meters) long and to be between 33 and 36 feet (10 and 11 meters) wide. What its intended missions might be are unknown, but this is certainly larger than common diesel-electric submarines (SSK) and even longer than most nuclear fast attack submarines. For comparison, variants of China’s Type 093 nuclear-powered attack submarine (SSN), some of the most modern submarines in People’s Liberation Army Navy (PLAN) service today, are approximately 356 to 360 feet (108 to 110 meters long) and 36 feet wide. The official stated length and width of the U.S. Navy’s Virginia class SSNs, across all existing subvariants, are 377 feet (114.8 meters) and 34 feet (10.36 meters), respectively.

We can also see that the submarine at JN Shipyard has an X-form rudder configuration, something that first appeared on a submarine in China in 2024. This offers advantages over cruciform stern arrangements with horizontal and vertical rudders when it comes to maneuverability, efficiency, and safety.

An X-shaped stern is a feature now further associated with a next-generation Chinese attack submarine design commonly, but still unofficially, referred to as the Type 095. Naval News also reported today on the recent launch of what may be another Type 095, which has a traditional sail, at the Bohai Shipyard in Huludao, hundreds of miles to the north of Shanghai. This appears to have caused some confusion online, with some mistaking the boat at Bohai for the ‘sailless’ type.

The newly emerged submarine at JN Shipyard may also have a shrouded propulsor, which could be a pumpjet type. Pumpjets offer further benefits for quieter operation, especially at higher submerged speeds.

The absence of a traditional sail is still the most notable aspect of the new submarine at JN Shipyard. Omitting a large structure sticking out of the top of the hull helps significantly with streamlining the overall design. Eliminating that drag can allow greater optimization for speed and maneuverability while submerged. It can also help make the submarine quieter and, by extension, harder to detect, even while transiting through an area at higher speeds. This can be especially useful when racing out to threats, even those far away.

Not having a traditional sail could impose certain design constraints. Traditionally, naval submarines have used their sails to mount periscopes and other sensor masts, as well as extendable communication antennas and snorkels to help cycle air without fully resurfacing. That is space that can be used for other purposes, including launchers for countermeasures and general storage.

A generic example of the array of masts that extend up from the sails of modern naval submarines. Hensoldt

Above all else, while running on the surface, the sail is key for general navigation and situational awareness. It can also provide an elevated position for local force protection or supporting vertical replenishment (VERTREP) operations. If sufficiently hardened, it can even break through feet of ice during operations in and around the polar regions.

The sail of the US Navy’s Los Angeles class attack submarine USS Santa Fe seen broken through the ice during an exercise in the Arctic Circle in March 2026. USN/Petty Officer 1st Class Jacob Bergh

The lack of a sail might reflect a focus on seabed operations far from the surface where mast deployment and other considerations might be less pressing. At the same time, the design’s features could just as easily be centered on improving performance, including the ability to make transits as quickly as possible during blue water operations. It could also offer benefits for shallow-water operations, though we have noted that, overall, it is very large compared to SSKs.

As mentioned, a smaller ‘sailless’ submarine had already emerged at JN Shipyard in 2018. H.I. Sutton previously estimated that design to be around 150 feet (45 meters) long and 15 feet (four to four-and-a-half meters) wide. That submarine also had a non-X-shaped rudder arrangement and what appeared to be an unshrouded propeller. The exact reasons for building that boat and how it has been utilized over the years remain unknown, but it would have at least provided a testbed and technology demonstration platform to explore this design concept, and potentially other capabilities. Whether it was designed for crewed or uncrewed operation, or to be optionally crewed, is not clear, either. The same is true of this new submarine, though it seems unlikely it is uncrewed.

A top-down look at the first low-profile submarine to emerge from JN Shipyard. Chinese Internet

At the Zhuhai Airshow in 2024, the state-run China State Shipbuilding Corporation (CSSC) did show a model of an unprecedentedly large, diesel-electric UUV. Its overall design was highly reminiscent, at least in broad strokes, of JN Shipyard’s original ‘sailless’ submarine, as TWZ noted at the time. JN Shipyard is one of many subsidiaries of CSSC.

CSSC said at the time that the drone submarine could be configured to perform a wide array of missions, including launching attacks on enemy vessels, laying mines, supporting special operations forces, and serving as a mothership for smaller uncrewed underwater vehicles (UUV). You can read more about all of this here.

The model of the low-profile UUV design CSSC showed at the Zhuhai Airshow in 2024. Chinese internet

Other shipyards and navies around the world have explored low-profile submarine designs in the past, but designs have generally been consigned to the world of paper concepts and limited experimentation. The U.S. Navy, for instance, previously tested a Large Scale Vehicle Range (LSVR) subscale demonstrator submarine with a novel sail structure. The Navy’s Acoustic Research Detachment (ARD) conducted that work in a lake in Bayview, Idaho.

Large Scale Vehicle Range (LSVR) subscale demonstrator submarine seen sailing in Lake Pend Oreille in Idaho. Public Domain
A model of a low-profile ballistic missile submarine concept called Arktur shown in Russia in 2022. @MuxelAero

In 2021, the Navy also notably put out a contracting notice calling for concepts for inflatable sail structures, which could combine the benefits of traditional sails and low-profile designs. What degree of work the service may have conducted since then on this Inflatable Deployable Sail System (IDSS) is unclear, but it underscores how important a sail is for general operations on the surface.

The PLAN’s submarine force otherwise continues to grow in terms of capability and capacity, with an increasing number of more modern types. U.S. officials have openly said in the past that the quality of newer Chinese submarines has been getting closer in parity to American designs. All of this is further underscored by the recent appearance of the other new submarine at Bohai. In addition to new nuclear-power designs, China is also understood to be developing at least one design with a hybrid nuclear/conventional propulsion system, referred to as the Type 041 or Zhou class. The first known example of the Type 041 came to light after it looked to have sunk in a shipyard in 2024.

Crane barges seen surrounding the first known Type 041 submarine after it apparently sank at China’s Wuchang Shipyard in 2024. PHOTO © 2024 PLANET LABS INC. ALL RIGHTS RESERVED. REPRINTED BY PERMISSION

Greater use of nuclear propulsion promises to extend the reach of Chinese submarines in the Pacific and beyond, and is clearly part of the PLAN’s larger vision for naval power projection going forward.

“The PLA Navy is executing a significant strategic shift from diesel-electric to all-nuclear construction, representing a fundamental departure from historical construction patterns,” U.S. Navy Rear Adm. Mike Brookes, head of the Office of Naval Intelligence, wrote in prepared remarks ahead of a hearing before members of the U.S.-China Economic and Security Review Commission in March.

Brookes also highlighted how the hybrid Type 041, specifically, could offer “greater endurance, potentially filling regional patrol and presence missions more economically than full-size SSNs [attack submarines] and SSGN [guided missile submarines.”

China has significant demands for naval presence, in general, especially to assert its extensive and widely disputed maritime territorial claims in the South China Sea and elsewhere. The PLAN continues to expand the scale and scope of its combat fleets, overall, at a pace that far exceeds that of other navies globally. This includes the U.S. Navy, where the disparity has become increasingly concerning, as TWZ routinely highlights.

More remains to be learned about the newly emerged submarine at JN Shipyard, but it could point to new low-profile designs without traditional sails, possibly to act as the PLAN’s underwater high-speed interceptor, being part of China’s larger future submarine future.

Contact the author: joe@twz.com

Joseph has been a member of The War Zone team since early 2017. Prior to that, he was an Associate Editor at War Is Boring, and his byline has appeared in other publications, including Small Arms Review, Small Arms Defense Journal, Reuters, We Are the Mighty, and Task & Purpose.




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FAA grounds New Glenn rocket after botched satellite release

The FAA has grounded Blue Origin’s New Glenn rocket because although its launch was successful, one of the engines on its second stage did not fire properly when it got to space, which resulted in the spacecraft releasing a communications satellite in too low of an orbit to be useful. Photo by Joe Marino/UPI | License Photo

April 20 (UPI) — The Federal Aviation Administration grounded Blue Origin‘s New Glenn rocket after it botched the release of a satellite following its successful launch two hours earlier.

The third launch of New Glenn and second landing of its reusable booster stage “Never Tell Me The Odds” on a drone ship in the Atlantic Ocean was a success in those terms, but the spacecraft delivered AST SpaceMobile’s BlueBird 7 satellite to an orbit too low for it to operate properly.

Blue Origin said Monday that it is leading an investigation into one of New Glenn’s engines producing insufficient thrust to reach the mission’s target orbit.

“While we were pleased with the nominal booster recovery, we clearly didn’t deliver the mission our customer wanted, and our team expects,” Blue Origin CEO Dave Limp said in a post on X.

The FAA, NASA, the National Transportation Safety Board and the U.S. Space Force also have been monitoring the situation and will require Blue Origin to complete its investigation and report on the engine anomaly, the Orlando Sentinel reported.

“A return to flight is based on the FAA determining that any system, process or procedure related to the mishap does not affect public safety,” the FAA said in explaining why it grounded the rocket.

The New Glenn-3 rocket launched around 7:30 a.m. EDT on Sunday morning, nailing the flight and landing portion of its mission, and successfully released the BlueBird 7 satellite once it reached orbit.

Because one of the two BE-3U engines that power New Glenn’s upper stage didn’t produce sufficient thrust on its second engine burn, which is meant to boost the spacecraft to its target orbit above Earth, it never got there.

Although the satellite was released and powered on properly, the off-nominal orbit — which was too low for it to be useful — AST said it would be jettisoned.

BlueBird 7 is one of 45 satellites that AST SpaceMobile hopes to get in orbit by the end of 2026 as part of a satellite-based cellular network designed to operate with standard smartphones.

The satellite would have been the companies eighth to reach orbit, and it’s share price Feller by more than 6% on Monday, The BBC reported.

Limp said Blue Origin is analyzing data as it conducts the investigation and is “in steady communication with the team at AST SpaceMobile.”

“We appreciate their partnership, and we’re looking forward to many flights together,” Limp said.

NASA’s Orion spacecraft, with the four-member Artemis II crew aboard, is seen under parachutes as it lands in the Pacific Ocean off the coast of California on Friday after its nearly 10-day journey around the Moon and back. NASA Photo by Bill Ingalls/UPI | License Photo

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Angry Kitten Jamming Pod Testing On HC-130J Focuses On Receiving Threat Updates Via Satellite

The U.S. Air Force is continuing to expand on the capabilities of the Angry Kitten electronic warfare pod, which just recently made its combat debut on the F-16 fighter in the latest conflict with Iran.

New testing has focused on improving the ability of HC-130J Combat King II combat search and rescue aircraft carrying the pods to receive reprogramming updates in near-real-time via satellite. HC-130Js just recently flew extremely high-risk and high-profile sorties over Iran as part of the effort to rescue the crew of a downed F-15E Strike Eagle. Being able to rapidly refine and optimize Angry Kitten’s capabilities will help the system remain as effective as possible, even in a very quickly evolving threat environment, and could be a stepping stone to more advanced functionality.

The Air National Guard Air Force Reserve Command Test Center (AATC) recently shared details about new testing of Angry Kitten on the HC-130J during an iteration of the Bamboo Eagle exercise. Bamboo Eagle is a large-scale air combat exercise series focused on preparedness for a high-end fight in the Pacific. AATC has already been test flying Angry Kitten on the HC-130J for more than a year now.

An HC-130J Combat King II assigned to the 129th Rescue Wing seen carrying an Angry Kitten electronic warfare pod while flying in the Point Mugu, California area on September 11, 2025. Fred Taleghani / FreddyB Aviation Photography

The pods have also been test flown on Air Force A-10 Warthog ground attack jets and Navy F/A-18 Super Hornet fighters. As noted, it is now being employed operationally on Air Force F-16s, as well. Angry Kitten was originally developed to replicate hostile electronic warfare threats during testing and training, as part of a cooperative effort between the Air Force and the Navy, and worked so well that it was adapted to operational use. We will come back to this later on.

An F-16C fighter with an Angry Kitten pod on its centerline station, seen flying a sortie in support of Operation Epic Fury against Iran. CENTCOM
An Angry Kitten pod under the wing of a Navy F/A-18E Super Hornet. USN Naval Air Warfare Center Weapons

During Bamboo Eagle, “AATC’s primary evaluation centered on the Angry Kitten electronic warfare pod integrated aboard a HC-130J Combat King II. The force development evaluation built directly on an operational assessment completed the previous year, which found the system potentially effective and suitable on the platform,” according to a press release that the center put out last week. “Testers incorporated recommendations from that assessment while the 130th Rescue Squadron flew the pod against simulated ship-based and ground-based threats during exercise vulnerability periods, evaluating both survivability and the system’s broader electronic attack capability.”

The 130th Rescue Squadron is part of the California Air National Guard’s 129th Rescue Wing.

“Running alongside that effort, AATC continued maturing the Ka/Ku-band communications suite, which enables over-the-horizon communications and near-real-time electronic warfare reprogramming via satellite link,” the release adds. “The suite compresses what was previously a multi-day technique development and distribution process to near-real-time between sorties.”

AATC has previously disclosed that it has been working on this capability, which looks to be unique to the integration of Angry Kitten on the HC-130J, at least currently. The Combat King II has the benefit of a wide-band satellite communication system, which is also found on U.S. special operations C-130 variants and other aircraft. The HC-130J carries the pod using a Special Airborne Mission Installation and Response (SABIR) system installed in place of its left rear paratrooper door.

An HC-130J with an Angry Kitten pod on a SABIR system mounted in place of its left rear paratrooper door. USAF
A look inside the HC-130J during testing of the Angry Kitten pod. USAF

“The C-130 testing features innovative real-time updates to electronic warfare techniques,” AATC said in a previous press release in March 2025. “Unlike the F-16 tests, where pre-programmed mission data files were used, the C-130 testing includes development engineers aboard the aircraft who can modify jamming techniques mid-mission based on feedback from range control.”

As can be seen above, to date, AATC has largely framed the benefits of this reprogramming capability within the context of accelerating continuing test and evaluation of Angry Kitten. At that same time, this would also be extremely valuable in an operational context.

In general, electronic warfare systems use built-in threat libraries to accurately detect, categorize, and respond to waveforms. In turn, their effectiveness is inherently determined by the breadth of data in that library. Specialists, often working in purpose-built reprogramming laboratories far from the front lines, have to work tirelessly to keep these systems up to date. Historically, this has been a very lengthy process, and one that has increasingly had trouble keeping pace with the rate at which threats are evolving.

A member of the 16th Electronic Warfare Squadron, another unit with the 350th Spectrum Warfare Wing, analyzes radio frequency signals at the B-1 Lab at Eglin Air Force Base in Florida. (This photo has been altered for security purposes by blurring out portions of monitors). USAF

As noted, Angry Kitten was developed first as a training and testing tool. It is a direct outgrowth of the AN/ALQ-167 electronic warfare pod, variants of which have been used in those contexts for decades to mimic hostile electronic warfare threats. However, Angry Kitten was designed from the start to be more readily updatable and modifiable in order to make it easier to adapt it to new and evolving threats.

“At the core of that technology is Angry Kitten’s Technique Description Language architecture. Georgia Tech designed TDL as a hybrid that pairs dedicated hardware modules for speed and bandwidth with software for complex decision-making,” according to a press release Naval Air Systems Command (NAVAIR) put out last month. “The practical result: government programmers can reprogram the jammer to counter new threats without sending it back to the contractor for expensive, time-consuming code changes. When an adversary adapts its radar tactics, NAWCWD’s team can update the jammer’s response in days instead of waiting months for a contract modification.”

Angry Kitten is also known to make use of advanced Digital Radio Frequency Memory (DRFM) technology. Using DRFM, radio frequency (RF) signals can be detected and ‘captured.’ Those same signals can then be manipulated and retransmitted. As an example of what this means in practice, signals from enemy air defense radars or radar seekers on incoming missiles can be recorded and pumped back in a way that creates false or otherwise confusing tracks. That same data can also be used as part of the reprogramming process to improve the stability capabilities, as well as be further exploited for general intelligence-gathering purposes.

An Angry Kitten pod on a stand during test. USN

This all already contributed to the evolution of Angry Kitten into an operational system.

“We had a jammer called ‘Angry Kitten.’ It was built to be an adversary air jamming tool,” now-retired Air Force Gen. Mark Kelly, then commander of Air Combat Command (ACC), told TWZ and other outlets back in 2022. “And all of a sudden, the blue team said, ‘you know, hey, we kind of need that, can we have that for us?’ And so I see this iterating and testing our way into this.”

When it comes to near-real-time updates for Angry Kitten, even if the communications suite used on the HC-130J won’t fit on smaller tactical jets, it could potentially be ported over into a capability that is readily deployable to forward locations. Another possibility is that an aircraft with a wide-band satellite communications system could then pass updates for Angry Kitten to other aircraft within line of sight using other datalink capabilities.

Another view of the F-16 carrying the Angry Kitten pod during a mission in support of Operation Epic Fury. CENTCOM

The underlying developments have further implications when it comes to developing so-called cognitive electronic warfare capabilities. Cognitive electronic warfare is a broad area of development focused on new technologies to further automate or otherwise accelerate the reprogramming process. The absolute ‘holy grail’ of the overall concept is an electronic warfare system that can adapt autonomously in real time to new threat waveforms, or known ones being modulated in unexpected ways, even right in the middle of a mission. You can read more about all of this here.

Ongoing work to expand and improve Angry Kitten’s capabilities will also now benefit from lessons learned from the employment of the pods in combat sorties over and around Iran.

The multi-day effort to recover the crew of an F-15E Strike Eagle downed in that country earlier this month also highlighted the immense risks involved in combat search and rescue (CSAR) operations, and the importance of adding new self-protection capabilities to the HC-130J, specifically. Air Force Combat King IIs can expect to face far greater threats while conducting CSAR missions during a conflict with a near-peer adversary like China. This has prompted questions about the utility of HC-130Js and other traditional CSAR assets in the context of any future high-end fight.

In the meantime, Angry Kitten continues to evolve in significant ways, including its growing ability to receive key updated data remotely in near-real-time when paired with the HC-130J.

Contact the author: joe@twz.com

Joseph has been a member of The War Zone team since early 2017. Prior to that, he was an Associate Editor at War Is Boring, and his byline has appeared in other publications, including Small Arms Review, Small Arms Defense Journal, Reuters, We Are the Mighty, and Task & Purpose.


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Blue Origin launches New Glenn rocket, puts satellite in wrong orbit

April 19 (UPI) — Blue Origin successfully launched its New Glenn rocket and landed its booster stage, but it delivered a communications satellite into an orbit too low to be useful.

New Glenn-3, the third launch of the company’s rocket, cleared the tower just before 7:30 a.m. EDT on Sunday morning and roughly six minutes later its first stage touched down on the “Jacklyn” drone ship in the Atlantic Ocean.

The fully reusable booster, called “Never Tell Me The Odds,” was making its second landing as the mission hit its second stage engine cutoff, entered orbit and released AST SpaceMobile’s BlueBird 7 satellite successfully.

The release was successful and the satellite powered up properly, but had been placed into “an off-nominal orbit,” Blue Origin said in a post on X.

“During the New Glenn 3 mission, BlueBird 7 was placed into a lower than planned orbit by the upper stage of the launch vehicle,” AST said in a press release.

“While the satellite separated from the launch vehicle and powered on, the altitude is too low to sustain operations with its on-board thruster technology and will de-orbited,” the company said. “The cost of the satellite is expected to be recovered under the company’s insurance policy.”

AST’s BlueBird 7 satellite is part of a space-based cellular broadband network the company is building that will be accessible using normal smartphones.

The satellite would have been the eighth the company has put in orbit for the network, has satellites number through 32 in production and expects BlueBird 8, BlueBird 9 and BlueBird 10 to be completed in the next month.

AST said that it plans to continue launching satellites roughly every other month for the rest 2026 using “multiple launch providers,” with a goal of 45 satellites in orbit by the end of the year.

Blue Origin, in addition to launching satellites for commercial and government entities, is also building a prototype MK1 “Endurance” lander as a test vehicle in an uncrewed moon landing later this year, Space.com reported.

The prototype is a test run for its MK2 lunar lander that will be used in NASA’s Artemis program to explore the moon and establish a permanent human presence there.

NASA’s Orion spacecraft, with the four-member Artemis II crew aboard, is seen under parachutes as it lands in the Pacific Ocean off the coast of California on Friday after its nearly 10-day journey around the Moon and back. NASA Photo by Bill Ingalls/UPI | License Photo

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