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Investigation of the Algorithm for Determining the Acoustic Signals Sources Angular Coordinate

机译:确定声信号源角坐标的算法研究

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The results of the investigation of the algorithm for measuring the angular position of two sources of an acoustic field are presented. The case is considered when the sources are within the width of the main lobe of the receiving antenna of directivity characteristic. The possibility of applying an algorithm for estimating the angular position for sources of both coherent and incoherent signals is shown. With a decrease in the angular distance between the radiation sources and with a decrease in the signal-to-noise ratio, a shift in the estimates of their angular coordinates may occur. This is caused by the non-linearity of signal conversion in the algorithm. To reduce the magnitude of the angle estimation offset, and also to reduce the mean square errors of the measured parameters, it is possible to average the control signal in the feedback loop. The studies confirmed the conclusion that the instrumental errors of the antenna and the receiving channels exert a significant influence on the magnitude of the displacement of the angular position estimates. The applied algorithm corrects such errors. The correction method is based on the joint determination of the source angular coordinates and instrumental errors. Estimation of additional parameters leads to a certain decrease in accuracy when measuring the coordinates of radiation sources. However, for small meter errors this decrease in accuracy is insignificant.
机译:给出了用于测量声场两个源的角位置的算法的研究结果。当源在具有方向性特征的接收天线的主瓣的宽度内时,考虑这种情况。示出了应用算法来估计相干和非相干信号的源的角位置的可能性。随着辐射源之间的角距离的减小以及信噪比的减小,它们的角坐标的估计中的偏移可能发生。这是由算法中信号转换的非线性引起的。为了减小角度估计偏移的大小,并且还为了减小所测量的参数的均方误差,可以对反馈回路中的控制信号求平均。研究证实了这样的结论,即天线和接收通道的仪器误差对角位置估计的位移幅度产生了重大影响。应用的算法纠正了此类错误。校正方法基于源角坐标和仪器误差的共同确定。在测量辐射源的坐标时,附加参数的估计会导致准确性降低。但是,对于较小的仪表误差,精度的降低是微不足道的。

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