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Helicopter Synthetic Vision Based DVE Processing For All Phases of Flight

机译:基于直升机合成视觉的飞行所有阶段的DVE处理

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Helicopters experience nearly 10 times the accident rate of fixed wing platforms, due largely to the nature of their mission, frequently requiring operations in close proximity to terrain and obstacles. Degraded visual environments (DVE), including brownout or whiteout conditions generated by rotor downwash, result in loss of situational awareness during the most critical phase of flight, and contribute significantly to this accident rate. Considerable research into sensor and system solutions to address DVE has been conducted in recent years; however, the promise of a Synthetic Vision Avionics Backbone (SVAB) extends far beyond DVE, enabling improved situational awareness and mission effectiveness during all phases of flight and in all visibility conditions. The SVAB fuses sensor information with high resolution terrain databases and renders it in synthetic vision format for display to the crew. Honeywell was awarded the DARPA MFRF Technical Area 2 contract in 2011 to develop an SVAB1. This work includes creation of a common sensor interface, development of SVAB hardware and software, and flight demonstration on a Black Hawk helicopter. A "sensor agnostic" SVAB allows platform and mission diversity with efficient upgrade path, even while research continues into new and improved sensors for use in DVE conditions. Through careful integration of multiple sources of information such as sensors, terrain and obstacle databases, mission planning information, and aircraft state information, operations in all conditions and phases of flight can be enhanced. This paper describes the SVAB and its functionality resulting from the DARPA contract as well as Honeywell R&D investment.
机译:直升机经历了固定翼平台的事故率的近10倍,这主要是由于其使命的性质,经常需要靠近地形和障碍的操作。降级的视觉环境(DVE)(包括由转子挖掘产生的衰退或粉红色条件,导致在最关键的飞行期间丢失情境感知,并对这种事故率有显着贡献。近年来进行了对传感器和系统解决方案的相当大的研究,近年来进行了解决道德;然而,合成视觉航空电子骨架(SVAB)的承诺远远超出DVE,在飞行中的所有阶段和所有可见性条件下,能够改善局势意识和任务效率。 SVAB融合了具有高分辨率地形数据库的传感器信息,并以合成视觉格式呈现,以显示到机组人员。霍尼韦尔于2011年获得了DARPA MFRF技术领域2合同,以开发SVAB1。这项工作包括创建一个共同的传感器接口,SVAB硬件和软件的开发,以及黑鹰直升机上的飞行演示。 “传感器无关”SVAB允许平台和特派团多样性,即使研究继续进入DVE条件的新的和改进的传感器,也仍然具有高效的升级路径。通过仔细集成多种信息,如传感器,地形和障碍数据库,使命计划信息和飞机状态信息,可以提高所有条件和飞行阶段的操作。本文介绍了由DARPA合同以及霍尼韦尔研发投资产生的SVAB及其功能。

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