WASP:一种在资源高度受限的移动平台上的无线电地理定位系统

K. Chhokra, T. Bapty, J. Scott, S. Winberg, J. Sztipanovits, D. V. Rheeden, B. Abbott
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引用次数: 0

摘要

近年来,民用和军事领域对监视能力的需求不断增加。长期以来,移动无人传感器车队一直被设想为获取此类情报的工具。我们将地理定位系统描述为无人驾驶飞行器的有效载荷。特别是,我们解决了在设计廉价,分布式,移动,射频传感器处理系统时出现的问题:低有效载荷成本;限制功率组件;实时约束;没有普通的时钟;以及不同的环境条件。我们还定性地针对准确性(到达时间估计和最终地理位置)、计算工作量、物理维度和操作物流等维度进行权衡决策。最后还描述了系统的结构、算法和精度图。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
WASP: a radio geolocation system on highly resource constrained mobile platforms
In recent years, there has been an increased need for surveillance capabilities in both civilian and military arenas. Mobile unmanned sensor fleets have long been envisioned as a tool for acquiring such intelligence. We describe a geolocation system as a payload for unmanned aerial vehicles. In particular, we address the issues that arise in designing an inexpensive, distributed, mobile, RF sensor processing system: low payload cost; power-limited components; real-time constraints; absence of common clocks; and varying environmental conditions. We also target, qualitatively, the tradeoff decisions across the dimensions of accuracy (of time of arrival estimates and the final geolocation), computational effort, physical dimensions, and operational logistics. The final system architecture, algorithms, and accuracy figures are also described.
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