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Tactile Torso Display Supports Helicopter Landing in Low-Visibility Conditions

机译:触觉躯干显示器在低能见度条件下支持直升机降落

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Helicopter landings are jeopardized in ‘brownout’conditions, in which sand or dust is stirred up by the rotor downwash, obscuring cockpit visibility. This paper describes the results of a flight test to investigate whether a “tactile display” can support the pilot in low-visibility landings. A tactile display relays information to the skin by means of an array of small vibrating elements, or “tactors”. Method: Two flight parameters were considered relevant for the landing of a transport helicopter: the ground speed vector (direction and speed), and height-above-terrain. The tactile display used in the flight test consisted of a horizontal belt with 31 tactors, covering the frontal 180 eg of the pilot’s abdomen, to present ground speed. Height- above-terrain was presented on a vertical band placed on the pilot’s back, and consisting 20 tactors. The flight trials used a Cougar helicopter. Brown-out like conditions were simulated by placing complementary colored sheets on the helicopter’s canopy and the pilot’s visor. Results: n brownout-like conditions, the landing maneuver was performed faster, more accurate, better controlled, and with less mental effort when altitude and/or groundspeed information was presented on the tactile display. Adequate performance criteria were only met when the test pilot was using the tactile display. Conclusion: A tactile landing aid may mprove flight safety in brown-out situations, or low- visibility conditions in general. The landing maneuver can be performed quicker and more accurate with tactile feedback than in the condition without tactile feedback.
机译:在“电力不足”的情况下,直升机着陆会受到威胁,在这种情况下,沙粒或灰尘会因旋翼下降冲洗而被搅动,从而使驾驶舱的视野不清晰。本文描述了一项飞行测试的结果,以调查“触觉显示”是否可以在低能见度着陆中为飞行员提供支持。触觉显示器通过一系列小型振动元件或“触觉器”将信息传递到皮肤。方法:两个飞行参数被认为与运输直升机的降落有关:地面速度矢量(方向和速度)和地势高度。飞行测试中使用的触觉显示器包括一条水平皮带,该水平皮带上有31个触角,覆盖正面180,例如飞行员的腹部,以显示地面速度。地形高度显示在飞行员背上的垂直带上,由20个触针组成。飞行试验使用了美洲狮直升机。通过在直升机的顶篷和飞行员的遮阳板上放置互补的彩色板,模拟了类似掉电的情况。结果:在类似电力不足的情况下,当在触觉显示器上显示高度和/或地面速度信息时,着陆操作执行得更快,更准确,控制得更好,并且用的精力更少。仅当测试飞行员使用触觉显示器时,才能满足适当的性能标准。结论:触觉着陆辅助装置可在节电情况下或通常在低能见度条件下提高飞行安全性。与没有触觉反馈的情况相比,使用触觉反馈可以更快,更准确地执行着陆动作。

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