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Design manufacturing integration and flight testing of a health monitoring system for a prototype unmanned airborne vehicle

机译:原型无人机的健康监控系统的设计制造集成和飞行测试

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This article describes the design, development, build and flight testing of a health monitoring system for the landing gear and the electrical power system on board the Demon prototype unmanned airborne vehicle. Demon is a flying technology demonstrator which successfully flew in September 2010. The Demon can achieve pitch and roll control without the use of hinged control surfaces, by instead using fluidic devices based on the Coanda effect, attaining low-maintenance, high-manoeuvrability operations. A vehicle health monitoring system was added on board between the first and the second flight test campaigns. The integration of the health monitoring system into the vehicle is discussed as a whole. The key health monitoring sub-systems include data logging and real-time measurement of several parameters. This includes systems to measure Voltage and current from the main batteries, landing gear stress, suspension travel, wheel hub acceleration and shock absorber pressure. Wherever possible, the use of commercially available components was maximised to minimise development time and cost. Some example results of system health monitoring during flight trials are presented.
机译:本文介绍了Demon原型无人驾驶飞机上起落架和电力系统的健康监控系统的设计,开发,建造和飞行测试。恶魔是飞行技术的演示者,于2010年9月成功飞行。该恶魔无需使用铰接控制面即可实现俯仰和侧倾控制,而可以使用基于柯恩达效应的射流装置来实现低维护,高机动性操作。在第一次和第二次飞行测试之间增加了车辆健康监测系统。整体上讨论了将健康监控系统集成到车辆中的问题。关键的健康监控子系统包括数据记录和几个参数的实时测量。这包括测量来自主电池的电压和电流,起落架应力,悬架行程,轮毂加速度和减震器压力的系统。在可能的情况下,最大限度地利用市售组件,以最大程度地减少开发时间和成本。给出了在飞行试验期间系统运行状况监视的一些示例结果。

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