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A low-power architecture for high frequency sensor acquisition in many-DOF UAVs

机译:用于多自由度无人机的高频传感器采集的低功耗架构

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Unmanned Aerial Vehicles (UAVs) are becoming increasingly popular thanks to an increase in the accessibility of components with high reliability and reduced cost, making them suitable for civil, military and research purposes. Vehicles classified as UAVs can have largely different properties in terms of physical design, size, power, capabilities, as well as associated production and operational cost. In this work, we target UAVs that feature a high number of degrees of freedom (DOF) and that are instrumented with a large number of sensors. For such platforms, we propose an architecture to perform data acquisition from on-board instrumentation at a frequency (100 Hz) that is twice as fast as existing products. Our architecture is capable of performing acquisition with strict timing constraints, thus, the produced data stream is suitable for performing real-time sensor fusion. Furthermore, our architecture can be implemented using embedded, commercial hardware, resulting in a low-cost solution. Finally, the resulting data acquisition unit features a low-power consumption, allowing it to operate for two to three hours with a miniature battery.
机译:无人驾驶飞机(UAV)变得越来越受欢迎,这归因于具有更高可靠性和降低成本的部件的可及性,从而使其适合民用,军事和研究目的。分类为无人机的车辆在物理设计,尺寸,功率,功能以及相关的生产和运营成本方面可能具有很大的不同。在这项工作中,我们的目标是具有很高的自由度(DOF)并装有大量传感器的无人机。对于此类平台,我们提出了一种架构,可以以100倍于现有产品的频率从车载仪器执行数据采集。我们的架构能够在严格的时序约束下执行采集,因此,生成的数据流适合于执行实时传感器融合。此外,我们的体系结构可以使用嵌入式商用硬件来实现,从而提供了一种低成本的解决方案。最终,最终的数据采集单元具有低功耗特性,可以使用微型电池运行两到三个小时。

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