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	<title>ITSEC - Air Force TImes</title>
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		<title>Air Force Seeks Virtual Elements in Flight Exercises to Heighten Realism, Complexity</title>
		<link>https://one.sightlinemg.com/airforcetimes/industry/techwatch/2016/12/05/air-force-seeks-virtual-elements-in-flight-exercises-to-heighten-realism-complexity/</link>
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		<pubDate>Mon, 05 Dec 2016 14:41:14 +0000</pubDate>
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					<description><![CDATA[With live training alone unable to provide the complex scenarios meant to push the F-35 to its limits, the Air Force is banking on a suite of cutting-edge technologies that will fuse virtual and constructive elements into live exercises.]]></description>
		
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		<post-id xmlns="com-wordpress:feed-additions:1">39637</post-id><media:content medium="image" url="https://one.sightlinemg.com/wp-content/uploads/2026/08/f-35-northern-lightning.jpg.jpg" width="4726" height="3155" type="" />
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<p class="wp-block-paragraph">ORLANDO, Fla. — With live training alone unable to provide the complex scenarios meant to push the F-35 to its limits, the US Air Force is banking on a suite of cutting-edge technologies that will fuse virtual and constructive elements into live exercises.<br/><br/>The Air Force Research Laboratory (AFRL) is about halfway through the technology demonstration phase of the Secure Live, Virtual and Constructive Advanced Training Environment (SLATE) program, which will secure the technologies needed to give pilots as close of an experience as they can get to an actual battle. <br/><br/>The program is set to begin demonstrating the system aboard F-15E Eagles and Navy F/A-18s in 2018, but the technology probably won&#8217;t be ready for the F-35 and other fifth-generation aircraft until the mid 2020s, said Maj. Gen. Robert McMurry, AFRL commander.<br/><br/> &#8220;We&#8217;ve learned over the past that our training systems are not up to the task that we have,&#8221; he said during a Nov. 29 keynote speech at the Interservice/Industry Training, Simulation and Education (I/ITSEC) conference in Orlando. &#8220;The cost of bringing live training environments and exercise environments to the level of fidelity that we really need to simulate what we would expect to be a conflict environment is probably cost prohibitive.&#8221;<br/><br/>Live, virtual and constructive (LVC) training has become a buzzword in the simulation industry over the past couple years, but SLATE is not about merely developing the capability for LVC assets to train together, said Dave &#8220;Moses&#8221; Noah, SLATE program manager at AFRL. A true LVC environment uses virtual and constructive elements to make live training as realistic as possible, enabling highly complex and advanced scenarios.<br/><br/> When the Air Force conducts live training today, there are elements of make believe that keep the pilot from having a truly immersive experience. For instance, an F-15E flying against an F-16 functioning as an aggressor aircraft will still see an F-16 on its radar shooting American weapons, he told Defense News.<br/><br/></p>





<p class="wp-block-paragraph">But once SLATE is integrated into the fleet, that F-15E will be able to see the F-16 as a MiG-29, or any other adversary aircraft, on all of its sensors and displays. The idea is to more accurately replicate the conditions of battle, including simulating various environments, adversary weapons and other systems not in the US inventory.</p>



<p class="wp-block-paragraph">&#8220;When we take off, go around the area and point at each other, I have the radar cross section signature of a MiG-29, I have all of the radar emissions of a MiG-29, so when I lock him up, he doesn&#8217;t see on his radar warning receiver a symbol for an F-16. He sees a MiG-29,&#8221; Noah said.</p>



<p class="wp-block-paragraph">&#8220;The first time that he knows that I&#8217;m not a MIG-29 is finally, at let&#8217;s say 2.1 miles, gets a visual on me,&#8221; he said. &#8220;Up until then, he doesn&#8217;t know.&#8221;</p>



<figure class="wp-block-image size-large"><img fetchpriority="high" decoding="async" width="3048" height="1715" src="/wp-content/uploads/2026/08/mig-29.jpg.jpg" alt="" class="wp-image-72115" srcset="https://one.sightlinemg.com/wp-content/uploads/2026/08/mig-29.jpg.jpg 3048w, https://one.sightlinemg.com/wp-content/uploads/2026/08/mig-29.jpg.jpg?resize=300,169 300w, https://one.sightlinemg.com/wp-content/uploads/2026/08/mig-29.jpg.jpg?resize=768,432 768w, https://one.sightlinemg.com/wp-content/uploads/2026/08/mig-29.jpg.jpg?resize=1024,576 1024w, https://one.sightlinemg.com/wp-content/uploads/2026/08/mig-29.jpg.jpg?resize=1536,864 1536w, https://one.sightlinemg.com/wp-content/uploads/2026/08/mig-29.jpg.jpg?resize=2048,1152 2048w" sizes="(max-width: 3048px) 100vw, 3048px" /></figure>



<p class="wp-block-paragraph"><span>Once SLATE is integrated, an F-15E in the training simulation will see the F-16 as a MiG-29, shown here, or other adversary aircraft, on all of its sensors and displays.</span></p>



<p class="wp-block-paragraph"><span>Photo Credit: powerline1/Getty Images</span></p>



<p class="wp-block-paragraph">AFRL is overseeing the development of three key technologies for the program: a radio waveform that can manage the unprecedented throughput of data between the different LVC assets, high-level data encryption that keeps sensitive information like radar signatures from proliferating, and a multi-level security system that allows different data to be passed to US and international assets depending on the level of classification.</p>



<p class="wp-block-paragraph">The waveform, called the Fifth Generation Advanced Training Waveform (5GATW) has been fully developed by Massachusetts Institute of Technology’s Lincoln Laboratory and performed final flight tests in September, Noah said. During the tests, Lincoln Labs stressed the waveform by passing as much data as possible between ground stations and two aircraft, an L-29 and Dassault Falcon 20 owned by the labs.</p>



<p class="wp-block-paragraph">Cubic is responsible for the rest of the system, including creating the encryption and security architecture as well as manufacturing a software-defined radio about the size of a smartphone capable of managing and processing the 5GATW, said Mike Knowles, vice president of air ranges. It’s also making the ground support system that will provide connectivity between the LVC elements.</p>



<p class="wp-block-paragraph">Over the upcoming months, the company will integrate those technologies — along with an antenna, power amplifier and a processor — together into a pod that will be attached to fourth-generation aircraft.</p>



<p class="wp-block-paragraph">&#8220;Inside our labs as systems integrator in San Diego, we’re already putting together the software-defined radio, the waveform we integrated, the multi-level secure architecture and the ground station,&#8221; he said. &#8220;So in our lab now, we’re at the point where we can do simulated connectivity of the system, so we can test out and verify the communications. The encryption system is already under the NSA [National Security Administration] process for certification.&#8221;</p>



<p class="wp-block-paragraph">During I/ITSEC, the company showcased some of the systems that will be encapsulated into the pod, which will be about the size of an AIM-9 Sidewinder missile. For fifth-gen jets like the F-35 and F-22, more engineering will be required to internally install the capability, preserving its low observability. That’s not a part of SLATE&#8217;s technology demonstration phase and will be done later on when the service starts an acquisition program, but Cubic has proposed some ideas to AFRL on how the core systems could be integrated into the joint strike fighter (JSF).</p>



<p class="wp-block-paragraph">&#8220;For JSF, it’s not going to be that hard. [For] a lot of the SLATE components, the hardware is designed to be able to be able to port into JSF in the future,&#8221; said Tim Cockerham, a senior principal systems engineer for Cubic. For instance, some of the technologies used for SLATE could replace older processors or other subsystems that are larger in size.</p>





<p class="wp-block-paragraph">The Air Force has committed $49 million for the technology development phase, and the Navy plans to add about $20 million of its own funds.</p>



<p class="wp-block-paragraph">AFRL and Cubic are going to continue testing and developing SLATE over the next year. Three two-week demonstrations at Nellis Air Force Base, Nevada, which will include Navy participation, are planned in 2018, Noah said.</p>



<p class="wp-block-paragraph">The first demo, planned for March, involves a couple F-15Es and F/A-18s interfacing with some virtual and constructive players</p>



<p class="wp-block-paragraph">the ground control stations, passing data back and forth</p>



<p class="wp-block-paragraph">​.</p>



<p class="wp-block-paragraph">&#8220;We’re just making sure we have connectivity out on the range at Nellis,&#8221; he said.</p>



<p class="wp-block-paragraph">Another demonstration in May increases the number of actors and the influx of data being exchanged. The capstone event in October will take it up yet another notch: up to 16 live aircraft acting as blue forces, additional live aggressor forces, and then &#8220;a classified number&#8221; of virtual and constructive forces.</p>



<p class="wp-block-paragraph">&#8220;But it’s going to be a lot because we want to show how much the system can handle,&#8221; he said.</p>



<p class="wp-block-paragraph"><b>Future Acquisition</b></p>



<p class="wp-block-paragraph">Once technology development ends, it will be up to the service to spin SLATE into a competitive program of record. That’s not exactly an easy thing to do in this fiscal environment for a capability that will cost billions, and possibly tens of billions, Noah said. However, the service’s Life Cycle Management Center, the acquisition arm of Air Force Materiel Command, has designated employees to help ensure a smooth transition.</p>



<p class="wp-block-paragraph">&#8220;They come to work in our building just to be joined at the hip with what AFRL is doing with SLATE,&#8221; he said.</p>



<p class="wp-block-paragraph">AFRL is already engaged in regular meetings with Air Combat Command — which has been designated the lead command for LVC platforms — and with Lynda Rutledge, the program executive officer for the agile combat support directorate, who is in charge of acquiring simulators.</p>



<p class="wp-block-paragraph">The acquisition strategy has not been finalized, but &#8220;this is going to be multiple programs of record because LVC is so huge,&#8221; he said.</p>
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		<title>Inside the &#8216;Monster Garage,&#8217; AFSOC’s Secret Training Weapon</title>
		<link>https://one.sightlinemg.com/airforcetimes/industry/techwatch/2016/11/29/inside-the-monster-garage-afsocs-secret-training-weapon/</link>
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		<pubDate>Tue, 29 Nov 2016 09:25:00 +0000</pubDate>
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					<description><![CDATA[The Air Force gets creative at Kirtland AFB.]]></description>
		
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		<post-id xmlns="com-wordpress:feed-additions:1">81909</post-id><media:content medium="image" url="https://one.sightlinemg.com/wp-content/uploads/2026/08/kirtland-monster-garage-war-wagon.JPG.jpg" width="3264" height="2448" type="" />
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<p>KIRTLAND AFB, New Mexico – A vehicle roars out of the back of an MC-130 at high speed, while nearby a man moves around in a virtual-reality headset. Above, winches are lowered and raised on a platform adorned with a Christmas tree. And at the center of it sits a former taco truck, now equipped with a really, really big gun.<br/><br/> It’s not a fever dream of an Air Force maintainer, although it’s not far off. It’s the reality of Kirtland Air Force Base&#8217;s &#8220;Monster Garage,&#8221; a key and innovative part of training airmen from the US Air Force Special Operation Command (AFSOC).<br/><br/> During a visit to Kirtland in September, reporters accompanying Secretary of Defense Ash Carter got to tour the Garage in person, getting a hands-on look at the designs that Col. Shelley Rodriguez, Commander of the 58th Operations Group, uses to help train over 2,000 airmen at Kirtland each year.<br/><br/><b><a class="" href="http://www.defensenews.com/itsec" target="_blank" title="Link: null">Find all our coverage of the 2016 I/ITSEC conference here!</a></b><br/><br/> Weeks after the visit, Rodriguez and Lt. Col. Joe Augustine, Commander of the 58th Training Squadron, told Defense News that increasing the use of simulation for training is a key part of how they plan to train airmen going forward.<br/><br/> As simulation and training technologies have improved, the Pentagon has been explicit in a desire to move more training from live flights to ground-based options. The benefits are obvious: reduced risk to pilots while cutting down on the costs of flying aircraft. As a bonus, trainers can program in a number of situations that would be expensive or impossible to create with a live aircraft.<br/><br/> The Monster Garage takes it a step farther, with a team of fabrication experts who have come up with a number of low-cost, ground-based training solutions. Picture the custom garage guys from shows such as &#8220;Pimp My Ride,&#8221; complete with black polo shirts adorned with the Monster Garage logo, except instead of adding pool tables to cars they are playing with discarded airplanes that otherwise would end up in the scrap heap.<br/><br/> Rodriguez estimates the Garage saves roughly $57 million each year by providing training alternatives to the tried-and-true method of getting into an aircraft, taking it up, and training live.<br/><br/> The 58th Operations Group trains special operations, combat search and rescue and airlift aircrews in the UH-1H/N, HH-60G, MH-53J/M, HC-130N/P, MC-130P, MC-130H and CV-22 aircraft, and all those platforms are well represented in the Monster Garage.<br/><br/> In total, Augustine said about 70 percent of the training on those platforms can be done with simulation, although that number changes based on the particular aircraft. Flight training on a C-130 model, for example, can be done almost 100 percent on the ground, whereas the CV-22 sits at about 70 percent through simulation. <br/><br/> So what makes up the core of the Monster Garage? Here are just a few of the designs on the floor of the facility: <br/><br/> <b>Load Master Fuselage Trainer</b>&#8211; The trainer, built by Lockheed Martin, helps train HC/MC-130 operators to quickly load and unload their aircraft. Essentially, the trainer is a mocked up back of a C-130 with a ramp attached, where loadmasters can simulate having to make a quick unload under enemy fire. During the visit to Kirtland, reporters watched the back ramp drop and a ground vehicle come roaring out the back at full speed. <br/><br/> It runs 15-18 hours a day, five days a week, with roughly 30-40 vehicles coming out the back every day. And that could expand, with Rodriguez saying they were considering opening the trainer up 24 hours a day in order to meet demand. <br/><br/> <b>MC130 Fuselage Trainer – </b>The Monster Garage’s fabrication team showed its value with this design, a retired MC-130E Combat Talon airframe that was on its way to be retired. The fabricators intercepted it and set to work redesigning it into a MC-130H Combat Talon II trainer. The work included stripping off the wings, clipping the propellers, and removing and then reinstalling dozens of feet of wiring inside the plane. <br/><br/> According to an Air Force press release from 2014, a military contractor wanted $15 million to make an equivalent piece of technology. Instead, the Monster Garage people managed to create one for roughly $250,000. Airmen now train about 10-15 hours a day on the system, primarily with training for tie down on the landing gear or loading and offloading vehicles. <br/><i></i><br/><br/><img decoding="async" alt="Monster Garage MC130 trainer" data-alignment="center" data-object-id="00000158-ace3-dceb-a9d8-aeefed210000" data-type="image" src="http://snagfilms-a.akamaihd.net/45/97/82c42745450fa78ddaf4f57ff571/monster-garage-mc130-trainer.JPG"/><figcaption> <span>On the left, the Load Master Fuselage Trainer; on the right, the MC-130 Fuselage Trainer. </span></figcaption><figcaption> <span>Photo Credit: Aaron Mehta/Staff</span></figcaption><br/> <b>The War Wagon</b> – Technically the <i>&#8220;</i>Live Fire Trainer,&#8221;<i> </i>this converted taco truck goes by the War Wagon nickname around the Garage. The design is almost comically simple – either a GAU2 minigun or M240B machine gun sticks out of the window of a small trailer – but it has netted huge results, according to Rodriguez. <br/><br/> The setup lets airmen train on the weapons used for the HH-60G and UH-1n without the cost of having to fly one of the helicopters down to a weapons range, spend a few hours flying around, and then returning. Instead, airmen can just haul the wagon down to a local range on the base, set up, and get their practice in without ever having to take a Huey into the air. <br/><br/> The War Wagon &#8220;gives us flexibility we have not had before,&#8221; Rodriguez said. &#8220;The thing has been phenomenal.&#8221;<br/><br/> Augustine notes that the universal mount used on the War Wagon could also hold the .50 caliber GAU-18 – but only if they decided to increase the structure of the Wagon, which wouldn’t be able to survive for long with the heavier weapon. <br/><br/> <b>UH-1N and HH-60 Static Trainers</b> – Looming over the Monster Garage is a tall tower, equipped on either side with old UH-1N and HH-60 platforms. These are used to train airmen who will be participating in rescue operations how to raise and lower litters loaded up with roughly 180-pound dummies. While they are doing that, trainers can simulate weather conditions to keep the training airmen on their toes. <br/><br/> Behind one of the aircraft sits a permanently placed Christmas tree, something Augustine says is actually a vital training tool. <br/><br/> &#8220;The students need to be able to manage that hoist in the presence of tall trees, because historically they struggle with that particular nuance of the training program,&#8221; he explained. So the tree serves as a stand-in for a whole forest that could be too close to the back of a helicopter. <br/><br/> At the same time, pilots can’t get too locked in on that tree, so the Garage set up a small commercial webcam inside the trainer cockpit, letting instructors see if their trainees are too focused on watching either the tree of the winch and ignoring the other.<br/><br/><img decoding="async" alt="Monster Garage Huey" data-alignment="center" data-object-id="00000158-ace6-df85-a75a-eceff08b0000" data-type="image" src="http://snagfilms-a.akamaihd.net/ed/fc/c76a306d4394bc29259f50f8a86c/monster-garage-huey.JPG"/><figcaption> <span>The Monster Garage set up a Christmas tree under its Huey trainer, in order to remind pilots to keep an eye on their tail.</span></figcaption><figcaption> <span>Photo Credit: Aaron Mehta/Staff</span></figcaption><br/> <b>CV-22 Trainer and Virtual Reality</b>— Primarily used for maintainers, who can do detailed training down to borescopes of the engine, the CV-22 trainer also lets special mission personnel learn the preflight systems. The Monster Garage team has begun playing with simulated environments to help pilots practice what they would need to do to get up and running under a variety of situations.<br/><br/> What’s more exciting about the CV-22 trainer is what could come in the realm of virtual reality. During the reporter visit in September, a virtual-reality trainer was set up with goggles and two controllers. The maintainers put the goggles on and can move around a shockingly accurate CV-22 simulation, opening panels to explore wiring. <br/><br/> Right now, the use of virtual reality is more a &#8220;proof of concept&#8221; than a working system, said Augustine. But both he and Rodriguez expressed hope that the service would find ways to fund virtual-reality systems in the coming years. <br/><br/> Rodriguez was particularly excited at the potential in such systems, especially as commercial companies such as Samsung are pushing mass-market virtual reality sets for less than $100 this Christmas season. She sees a future where every student is handed a VR system on their first day of training and it becomes a key part of their homework. <br/><br/> &#8220;When a student wants to study and can’t figure out what he saw on an aircraft, instead of having to walk down to the flight line, he can just pull the system up in his room and go back through an aircraft preflight while in his dorm room,&#8221; she said. &#8220;That’s kind of phenomenal. If you can get something like a tablet device where you could put some of the training on there and combine that with virtual reality, the possibilities are endless.&#8221;<br/><br/> And if it works for training, Rodriguez notes, it could also work for pre-mission briefings. Imagine a scenario where US forces are going to launch a mission against a target. Hours before the flight, an unmanned system could go and scout the area, beaming those pictures back to base where operators can strap on VR headsets and run through the mission, with near real-time data, before loading up. <br/><br/> &#8220;It’s almost mind blowing how much this could impact operations,&#8221; she said.<br/></p>
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		<title>KC-46 Flight Simulators To Enable Pilots, Boom Operators To Train Together</title>
		<link>https://one.sightlinemg.com/airforcetimes/air/2016/11/27/kc-46-flight-simulators-to-enable-pilots-boom-operators-to-train-together/</link>
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		<pubDate>Sun, 27 Nov 2016 19:47:00 +0000</pubDate>
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					<description><![CDATA[When KC-46 training starts at Altus Air Force Base next year, pilots and boom operators will conduct aerial refueling training together for the first time ever in linked, full-motion simulators.]]></description>
		
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		<post-id xmlns="com-wordpress:feed-additions:1">45598</post-id><media:content medium="image" url="https://one.sightlinemg.com/wp-content/uploads/2026/08/636039977489493281-16bft000006-14-kc46-f16-highresjpg.jpg" width="4507" height="3000" type="" />
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<p>WASHINGTON — When KC-46 training starts at Altus Air Force Base next year, pilots and boom operators will conduct aerial refueling training together for the first time ever in linked, full-motion simulators.<br/><br/> Simulation training will also replace a large portion of live flights, members of the 56th Air Refueling Squadron at Altus Air Force Base, Oklahoma, told Defense News. <br/><br/> Pilots learning to fly the Air Force’s oldest tanker, the KC-135, could expect to do about 15 to 20 simulated missions. KC-46 pilots will execute anywhere from 25 to 35 simulated missions, with only three live flights needed in the aircraft before they can move to their operational base, said Maj. Steven Whitson, the squadron’s standards and evaluation officer.<br/><br/> Although full-motion simulators have existed for decades, the KC-46 training program at Altus will mark the first time both tanker pilots and boom operators will be able to use them together to practice tactics and progress through scenarios at the same time, said Tech Sgt. Eric Flanders, the squadron’s non-commissioned officer in charge of tactics.<br/><br/> &#8220;Everything that they do up front, we&#8217;re going to feel in the back for the first time ever. It’s going to bring a lot of fidelity. Our training is going to be increased exponentially,&#8221; he said. <br/><br/> The 56th Air Refueling Squadron reactivated in August, after the base poured $33.5 million into new infrastructure, including $6.2 million on a fuselage trainer and a $12 million flight training center.<br/><br/><br/><img decoding="async" alt="kc-46 altus" data-alignment="center" data-object-id="00000158-8d7b-d0e0-ad58-bdff04c60000" data-type="image" src="http://snagfilms-a.akamaihd.net/07/1d/8774b0184dca89477c32751e899e/1801146.jpg"/><figcaption> <span>A March 2015 shot of the U.S. Air Force KC-46 Pegasus refueling aircraft flight training facility and fuselage trainer at Altus Air Force Base, Oklahoma. Both projects were completed before the standup of the 56th Air Refueling Squadron in 2016.</span></figcaption><figcaption> <span>Photo Credit: Airman 1st Class Megan Myhre/USAF</span></figcaption><br/> The squadron currently comprises 23 airmen — all of them qualified instructors for other aircraft, mostly the KC-135, said Whitson. These airmen, like Whitson and Flanders, have not gone through the KC-46 training program yet, but will be one of the first airmen that experience the curriculum before becoming instructors. <br/><br/> Much of the training schedule — including when the squadron instructions will wrap up their own training and begin teaching the first class of pilots and boom operators — hinges on the delivery of the first KC-46A aircraft and the associated simulators to the base. <br/><br/> &#8220;We’ve done everything we can do as aircrew,&#8221; Whitson said. &#8220;Altus is ready to receive aircraft and start training tomorrow.&#8221; <br/><br/> That airplane is slated to arrive in the fourth quarter of fiscal year 2017.<br/><br/> FlightSafety International is responsible for manufacturing the KC-46 full-motion simulators, which have a 225-degree field of view and glass displays that present crisper imagery than legacy simulators, said Ron Ladnier, president of FlightSafety Services Corp. The systems can be linked with other KC-46 simulators located at different bases around the country, allowing students to practice larger missions.<br/><br/> In 2013, FlightSafety was awarded a $78 million contract to produce the academic courseware, the simulators and other educational materials like part task trainers and fuselage trainers. The company is slated to deliver training equipment in spring 2017, at least 60 days before the arrival of the first KC-46.<br/><br/> After an academic phase run by FlightSafety, students will begin practicing standard and emergency procedures using part task trainers that mimic the interfaces they will see inside the KC-46, Flanders said. Then they will move on to the full-motion simulators.<br/><br/> Part of the reason so much of the training has been moved out of the cockpit is because technology has improved the fidelity of simulators by leaps and bounds. <br/><br/> &#8220;In the past we didn&#8217;t have the technology to make training realistic enough,&#8221; Whitson said. For example, landing in the KC-135 simulator always felt different than landing the plane itself because the training system couldn’t exactly mimic the mechanics of the aircraft. In a fly-by-wire aircraft like the KC-46, data can be collected about the aircraft’s performance and then used to build a high-fidelity simulator.<br/><br/> FlightSafety paid particular attention to the different air flows around the KC-46 and receiver aircraft, as well as the interplay of those air flows, Ladnier said. That aerodynamic interaction provides a difficult challenge to tanker operators as they conduct refueling missions, but is also one of the most challenging things to replicate in a simulator.<br/><br/> &#8220;We’ve worked very hard on that and we think we’re going to have a good simulation of what that’s like.&#8221;<br/><br/> Another feature is that the simulators can now reproduce more complex scenarios. For instance, pilots and boom operators will be able to practice taking off, flying to an area and refueling a C-17, Flanders said. During that task, an instructor could program an adversary aircraft to begin flying toward the KC-46, and the aircrew would then have to practice following proper procedures to break away from the receiver aircraft and land.<br/><br/> In a KC-135, that scenario would be conducted in a completely different way, he said. Pilots and boom operators do not interact at all during training, so a boom operator would be sitting in a simulator listening to an instructor, who would roleplay as the pilot using a written script.<br/><br/> At Altus, pilots and boom operators will conduct only a handful of live events inside the KC-46 — two flights and a check ride that validates their training and qualifies them for their position — before moving on to an operational squadron for additional practice.  <br/><br/> Pilots will spend about 82 days going through training at Altus AFB, although they may spend slightly less time there if they have already been certified to receive fuel during aerial refueling. Boom operator training will take approximately 59 days, Flanders said. <br/><br/></p>
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