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Feasibility of Discriminating UAV Propellers Noise from Distress Signals to Locate People in Enclosed Environments Using MEMS Microphone Arrays

机译:使用MEMS麦克风阵列来区分UAV推进器噪声从遇险信号噪声定位封闭环境中的人员的可行性

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摘要

Detecting and finding people are complex tasks when visibility is reduced. This happens, for example, if a fire occurs. In these situations, heat sources and large amounts of smoke are generated. Under these circumstances, locating survivors using thermal or conventional cameras is not possible and it is necessary to use alternative techniques. The challenge of this work was to analyze if it is feasible the integration of an acoustic camera, developed at the University of Valladolid, on an unmanned aerial vehicle (UAV) to locate, by sound, people who are calling for help, in enclosed environments with reduced visibility. The acoustic array, based on MEMS (micro-electro-mechanical system) microphones, locates acoustic sources in space, and the UAV navigates autonomously by closed enclosures. This paper presents the first experimental results locating the angles of arrival of multiple sound sources, including the cries for help of a person, in an enclosed environment. The results are promising, as the system proves able to discriminate the noise generated by the propellers of the UAV, at the same time it identifies the angles of arrival of the direct sound signal and its first echoes reflected on the reflective surfaces.
机译:检测和找到人们在减少可见性时是复杂的任务。例如,如果发生火灾,则会发生这种情况。在这些情况下,产生热源和大量烟雾。在这种情况下,不可能定位使用热或传统相机的幸存者,并且有必要使用替代技术。这项工作的挑战是分析了在Valladolid大学在无人机(UAV)在瓦拉迪德大学开发的声音相机的集成,以便通过声音呼吁帮助,在封闭的环境中寻找帮助可见性降低。基于MEMS(微机电系统)麦克风的声学阵列定位空间中的声源,并且UAV通过封闭的外壳自主地导航。本文介绍了定位多个声源到达角度的第一个实验结果,包括封闭环境中的呼吸奖励。结果是有前途的,因为系统证明能够区分由UAV的螺旋桨产生的噪声,同时识别直接声音信号的到达的角度及其第一回波反射在反射表面上的角度。

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