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Performance Analysis of an Acoustic Relative Positioning System

机译:声学相对定位系统的性能分析

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In this work, the performance of an acoustic relative positioning system is studied, by a Monte-Carlo analysis, with the aim of determining the obtained accuracy and precision. The system has been designed in order to be used in the relative positioning estimation of mobile objects which are not restricted to a particular environment and cannot depend on any external infrastructure. In the proposed system, the spatial relations among objects are computed by only using acoustic emissions with the aim of measuring the round-trip-time-of-flight of the acoustic signals emitted by every object. Then, using the data collected in the system, object positions are computed using the multidimensional scaling technique, and a closer solution is achieved by least-square algorithms, In this performance analysis, a Gaussian distribution of the errors has been considered. The obtained results show that a sub-centimeter precision and accuracy can be obtained considering a centimeter error magnitude in the distance measurements with the proposed ranging mechanism.
机译:在这项工作中,通过Monte-Carlo分析研究了声学相对定位系统的性能,目的是确定所获得的精度和精度。该系统已经设计,以便用于不限于特定环境的移动对象的相对定位估计,并且不能依赖于任何外部基础架构。在所提出的系统中,仅使用声发射来计算物体之间的空间关系,目的是测量每个物体发射的声学信号的往返时间飞行。然后,使用系统中收集的数据,使用多维缩放技术计算对象位置,并且通过最小二乘算法实现更近的解决方案,在这种性能分析中,已经考虑了误差的高斯分布。所得结果表明,通过提出的测距机构在距离测量中考虑厘米误差幅度,可以获得亚厘米精度和精度。

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