NATIONAL HARBOR, Maryland—The U.S. Air Force’s renewed look at the future of its aerial refueling fleet is again prioritizing stealthy, new-build aircraft—provided the service can afford it.

The service in August posted a new solicitation to industry to relook at potential designs for its Next General Aerial Refueling System (NGAS), with responses due in the coming weeks. Air Mobility Command boss Gen. John Lamontagne said the solicitation was approved by Air Force Secretary Troy Meink, with the goal of refining cost estimates for aircraft with technology to reduce its overall signature.

“That is really to help us better understand some cost estimates,” Lamontagne told reporters Sept. 22. “When we did the first analysis of alternatives on NGAS last winter, I would say those cost estimates were really rough on what a signature-managed platform might look like.”
https://aviationweek.com/defense/ai...iting-stealth-tankers-under-new-usaf-analysis
 
NGAS (National Gastrointestinal Acquisition Strategy) could also be used prevent political and budgetary bloating. Don't know if NGAS will disappear like a fart in the wind but the discomfort always seems to keep coming and going.
 
A little lateral thinking perhaps but, could they not also use a LO tanker as an 'Arsenal airframe"? Somewhat similar to the suggested us of heavy lift airframes.

Possibly even a 'palletised' system akin to 'Thunderbird 2'?
 
Don't be that cheap... a missile pod at least.
Yes, a pod would be less drag.

But would a 767 even notice a quartet of Sidewinders under the wings?


A little lateral thinking perhaps but, could they not also use a LO tanker as an 'Arsenal airframe"? Somewhat similar to the suggested us of heavy lift airframes.

Possibly even a 'palletised' system akin to 'Thunderbird 2'?
Only if they have a rear ramp.
 
Wouldn't a YAL-1 style laser be ultimately better than stuffing missiles on a tanker?
 
Wouldn't a YAL-1 style laser be ultimately better than stuffing missiles on a tanker?
Only in terms of where to mount the laser. IIRC, the laser was an oxygen-iodine chemical laser and the tankage for that took up a lot of internal volume. If we were talking a fiber laser or something it'd be a lot more viable.
 
For tanker self protection...?
Why not? Not only has laser technology advanced since then, unlike YAL-1 it wouldn't have to be powerful enough to deal with ICBMs in their terminal stage over long distances but defeat slower, smaller, AAMs that are so kind to come it's way.

In the long term it seems more logical to me than throwing a dozen of Sidewinders on the aircraft which could very well fail or be tricked by chaff (in a world where cruise missiles have flares, I can imagine that large long range AAMs could also see the usage of flares if such countermeasures like defensive missile armaments were introduced).

You cannot really do that with a laser. But yeah cooling, power and initial development and procurement cost would be significant hurdles.

Point was that when we move into the realm of active protection systems for large aircraft, lasers seem to more viable.
 
So MDSM still lives...

The intent should also be to couple a few CCA to the tanker orbits as a primary defensive asset.
I think 8 - 12 CCAs, 2 manned fighter escorts per 1 - 2 tankers forming a defense in depth would probably be a more desirable defense. The best way to avoid being shot at is to keep shooters at an arms length away.

The downside is that may or may not be too many resources devoted to escort. If the tanker is flying over an already well defended area then you could probably do away with less.

I thought lasers on aircraft had problems with jitter/staying on target and possibly effected by weather conditions too. Though maybe thats more of the case for smaller aircraft than a large aircraft with higher power lasers and more stability in flight.
 
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Why not? Not only has laser technology advanced since then, unlike YAL-1 it wouldn't have to be powerful enough to deal with ICBMs in their terminal stage over long distances but defeat slower, smaller, AAMs that are so kind to come it's way.
Yal-1 was boost stage intercept against very vulnerable and bright type of target(fuelled liquid-fuelled missile).
 
Yal-1 was boost stage intercept against very vulnerable and bright type of target(fuelled liquid-fuelled missile).
My bad, point stands though that YAL-1 had a more difficult mission profile.
 
Why not? Not only has laser technology advanced since then, unlike YAL-1 it wouldn't have to be powerful enough to deal with ICBMs in their terminal stage over long distances but defeat slower, smaller, AAMs that are so kind to come it's way.

In the long term it seems more logical to me than throwing a dozen of Sidewinders on the aircraft which could very well fail or be tricked by chaff (in a world where cruise missiles have flares, I can imagine that large long range AAMs could also see the usage of flares if such countermeasures like defensive missile armaments were introduced).

You cannot really do that with a laser. But yeah cooling, power and initial development and procurement cost would be significant hurdles.

Point was that when we move into the realm of active protection systems for large aircraft, lasers seem to more viable.

Some tankers already have DIRCM and I can see that being scaled up with current solid state fibre pumped lasers but YaL-1 was a 1MW class system that required essentially the whole aircraft to support the system.

I think 8 - 12 CCAs, 2 manned fighter escorts per 1 - 2 tankers forming a defense in depth would probably be a more desirable defense. The best way to avoid being shot at is to keep shooters at an arms length away.

The downside is that may or may not be too many resources devoted to escort. If the tanker is flying over an already well defended area then you could probably do away with less.

I thought lasers on aircraft had problems with jitter/staying on target and possibly effected by weather conditions too. Though maybe thats more of the case for smaller aircraft than a large aircraft with higher power lasers and more stability in flight.
The point being it would be threat dependant but I doubt that manned fighters are really necessary.
 
When I talked about YAL-1 I generally meant the placement of the laser and the general idea of active missile defense. Not to re-introduce the system 1:1
 
Ultimately I think it's very exciting that active hardkill countermeasures like missiles and lasers become serious propositions again. Especially as fighters become more and more stealthy, missiles longer and longer in range.

Ultimately it's the logical conclusion. And I can see this first introduced in tankers and perhaps AEW&C aircraft, then bombers and possibly strategic airlifters before ultimately trickling down to fighters.

A next gen tanker, strategic airlifter or non-stealth bomber should definitely Incorporate some form of active countermeasures that extend beyond the usual electronic warfare.
 
When I talked about YAL-1 I generally meant the placement of the laser and the general idea of active missile defense. Not to re-introduce the system 1:1
I get that but even looking to equip every aircraft with a system like what your suggesting would be expensive. A cheaper alternative is to scale/power up the existing DIRCM installs.

You would also find that most of the tanker fleet are not equipped with an RWR and so currently have no SA on whether they are being attacked so additional systems would also be needed across the fleet. That is why having escorts likely in the form of CCAs that have those systems already and could respond autonomously would better suit.

Frankly though future tankers should be unmanned and conduct autonomous refuelling.
 
Autonomous refueling is a ways off due to the vagaries of aerial refueling.

The vast areas which tankers must operate and operational areas sought for future counter-AA/AD ops demand active defense. Platform I&W +SA is insufficient. CCAs are likely to be overtasked so platform defense DEW would seem the natural emerging need/requirement.
 
I get that but even looking to equip every aircraft with a system like what your suggesting would be expensive.
That's true, comparatively speaking. But dedicated tankers are for one not really cheap either way and not the entire tanker fleet needs to be able to defend itself against threats in a general patch of air space. So in actuality the amount of aircraft procured and equipped with such a system would not be vast, not small either, but it wouldn't be the entirety of the tanker force in the inventory. Just how not every tactical aircraft in a given fleet needs to be a high end stealth aircraft.

Frankly though future tankers should be unmanned and conduct autonomous refuelling.
I believe there are many factors in favor and many factors against unmanned tankers. It depends a lot on the platform, it's mission and who uses it. The MQ-25 makes a lot of sense for the USN carrier force, but it won't replace KC-46s. I'd argue large, high volume, high capability tankers will remain manned for a long time, simply due to how they operate. And such high value assets could benefit from high end countermeasures. While smaller, cheaper, unmanned tanker aircraft could be more expendable. I think both concepts can coexist.
 
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Overboosted DIRCM may be an option, though a single big laser turret may be more viable in terms of cost of systems.

I'm hoping the Mini Self-Defense Missiles can be small enough to fit into the Flare launchers.
 
I'm hoping the Mini Self-Defense Missiles can be small enough to fit into the Flare launchers.
That seems highly unlikely. All the MSDM talk has been much bigger than that.

There two TWZ articles suggest larger weapons,

https://www.twz.com/35038/tiny-miss...t-against-enemy-missile-attacks-moves-forward
https://www.twz.com/21565/this-tiny...rtillery-rounds-drones-and-possibly-much-more
And a thread here already, https://www.secretprojects.co.uk/threads/raytheon-air-to-air-weaponry-sacm-msdm.26530/
 
Overboosted DIRCM may be an option, though a single big laser turret may be more viable in terms of cost of systems.

I'm hoping the Mini Self-Defense Missiles can be small enough to fit into the Flare launchers.
Problems are two.
First is target. AAMs are small and fast - intercepting them consistently is hard, especially with small a2a interceptors.
Second is nesessary sensor feed. You need significant MAWS/FCS sensor feed to support engagement. This is effectively a ~su-57-like suit on a tanker(Japanese P1 also has something broadly similar on big aircraft, but i am not sure it's meant for active defenses). Kinda extravagant.
 
Autonomous refueling is a ways off due to the vagaries of aerial refueling.

Not really, several different types of autonomous refueling have been developed and flight tested over the last 20 years, much of it to support LRS-B and related programs.

As far as defensive systems for tankers, as usual only a small fraction of the story is being reported. The services are looking at layered defense in depth for large aircraft. Several different types of systems working together.
 
Problems are two.
First is target. AAMs are small and fast - intercepting them consistently is hard, especially with small a2a interceptors.
Second is nesessary sensor feed. You need significant MAWS/FCS sensor feed to support engagement. This is effectively a ~su-57-like suit on a tanker(Japanese P1 also has something broadly similar on big aircraft, but i am not sure it's meant for active defenses). Kinda extravagant.
I'm aware it's a big ask for something roughly the size of a 24oz can but we don't need huge range here. Just enough that the incoming AAM's fragments can't reach the plane, maybe 1-2KM flight range.
 
Not really, several different types of autonomous refueling have been developed and flight tested over the last 20 years, much of it to support LRS-B and related programs.

As far as defensive systems for tankers, as usual only a small fraction of the story is being reported. The services are looking at layered defense in depth for large aircraft. Several different types of systems working together.
My company has been pinged for unmanned refueling platforms in regards to refueling hardware and systems. This capability is not far off. MQ-25 is one of these. NGAS may be used for refueling these unmanned CCAs and unmanned tankers including the manned platforms. Some of the unmanned platforms are be developed for dual-duty, strike, ISR and tankers.
 
I'm hoping the Mini Self-Defense Missiles can be small enough to fit into the Flare launchers.
The US has been planning for micro missiles for nearly a decade. The size will be a 70mm tube that is approximately half of the length of the APKWS. The 6th gen fighters and B-21 will have a internal launcher dedicated for this calibre.

The Lockheed missile is 40mm diameter, 70mm finspan 70cm long. 2.2kg. Your 24oz is more like 80oz.

It is only a matter of time for the F-35 to get a unique guided hit-to-kill decoy that fits the existing towed decoy/flare dispenser area. Dropping from the rear of the aircraft should cover the vast majority of threats. The F-35 simply needs to turn so the incoming missiles is coming from the lower rearward direction.

I'm sure the tanker aircraft will get a podded system that would appear on multiple platforms. It makes sense for the B-52, P-8, F-15EX and Super Hornets to all have these new defensive weapons.
 
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It is only a matter of time for the F-35 to get a unique guided hit-to-kill decoy that fits the existing towed decoy/flare dispenser area. Dropping from the rear of the aircraft should cover the vast majority of threats. The F-35 simply needs to turn so the incoming missiles is coming from the lower rearward direction.
You need to generate FC solution, especially for a weapon so compact.

F-35 can provide one (by itself) only frontally.
 
You need to generate FC solution, especially for a weapon so compact.

F-35 can provide one (by itself) only frontally.
The AN/AAQ-37 Distributed Aperture System provides 360 degree IR coverage and is designed for missile detection.

The SAMs are very hot as they climb through the thick atmosphere at supersonic speeds. The unpowered hit-to-kill munitions dropped from the rear of the F-35 would definitely have IR tracking.

F-35 share missile detection from the DAS through the MADL datalink. Two F35 can then determine the direction of the SAM. IR missiles don't need range or directional data of the target like with a long range radar guided missile. IR missiles just fly directly to the source of the heat. The unpowered hit-to-kill guided munitions would just fly towards the heat. They would most likely use lock on after launch which has been around for decades. The DAS system provides the direction of the SAM and the munition once ejected starts flying in that direction and the IR seeker then scans for the heat signature.

The AN ALQ 260 active expendable decoy has just been purchased for the US Navy F-35. It is designed to defeat radar guided weapons. This decoy was originally developed in Europe for the Typhoon. There are multiple F-35 decoys under development. A hit-to-kill decoy is the obvious solution that will eventually enter service.
 
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The AN/AAQ-37 Distributed Aperture System provides 360 degree IR coverage and is designed for missile detection.
IR coverage(esp. wide angle one, as per my understanding you can't really machine learn your way out) is 2D picture without depth...without second sensor it won't give you distance to target.
IR missiles don't need range or directional data of the target like with a long range radar guided missile.
If you're absolutely within range and don't care about trajectory efficiency - yes.
Otherwise, interceptor just wasted itself...

That's why I seriously suspect active interceptors on Su-57. It just has this 360(720) tracking and ranging capability for some reason. But elsewhere... maybe Kaan.
 
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IR coverage is 2D picture without depth. Without second sensor it won't give you distance to target.

If you're absolutely within range and don't care about trajectory efficiency - yes.
Otherwise, interceptor just wasted itself...
The AN ALQ 260 decoy is under $10,000 each and that includes a radar transmitter inside. An IR seeker is even cheaper.

As the SAMs will be climbing towards the F-35 the hit-to-kill munition will always be in range. The munition will be able to glide downwards without propulsion for considerable distance as the SAM climbs upwards.

Taking out a $3 million SAM with a $5,000 hit-to-kill munition the size of a can of coke is definitely not a waste. It will transform combat.
 
The AN ALQ 260 decoy is under $10,000 each and that includes a radar transmitter inside. An IR seeker is even cheaper.
If you buy life saving interceptor - you're buying your life, not saving money.
Also, IR seeker capable of locking attacking, burnout missile is not commercial.
As the SAMs will be climbing towards the F-35 the hit-to-kill munition will always be in range.
Eventually. When? And if there's more than one hot object in the sky, how do you LOAL what you want, when true signature is so small?
Taking out a $3 million SAM with a $5,000 hit-to-kill munition the size of a can of coke is definitely not a waste. It will transform combat.
It's impossible to base defense on a solution which you don't really know when to use. Especially if you fit it instead of continiously working towed decoy.
 
Also, IR seeker capable of locking attacking, burnout missile is not commercial.
The missiles are easy to track. The nose of a long range SAM exceeds 500 degrees due to aerodynamic heating. The radar seeker in the missile is also transmitting. I can't see the large SAMs getting their own countermeasures.

Eventually. When? And if there's more than one hot object in the sky, how do you LOAL what you want, when true signature is so small?
This means the enemy is firing multiple $3 million SAMs per aircraft. This is getting expensive. The hit-to-kill decoys will continue to become smarter. If there is multiple incoming missiles the decoys can then each select a target.

It's impossible to base defense on a solution which you don't really know when to use. Especially if you fit it instead of continiously working towed decoy.
The F-35 has a towed decoy in addition to 60 2x1x8 inch decoys. The hit-to-kill decoys would drop out of the normal 218 dispenser. The new expendable radar transmitter decoys drop out of the 218 dispenser. It then replaces a few of the flares and the towed decoy can still be used.
 

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