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A Semidefinite Programming Approach for Target Localization in the Presence of Sensors Location Errors

机译:传感器存在位置错误中的目标定位的半纤维编程方法

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In this work, a stationary target localization based on differential received signal strength in the presence of location errors is presented. In the proposed algorithm, it is considered that the exact position of the receivers are not available. By taking both the measurements and location errors into account, according to the Constrained Weighted Least Squares (CWLS) criterion, the Differential Received Signal Strength (DRSS) measurements are formulated as a form that is related to the target position. However, due to the non-convex nature of the CWLS problem, it is difficult to obtain the globally solution. Then the semidefinite relaxation (SDR) technique is applied to relax the CWLS problem into a Semidefinite Programming Problem (SDP), which can be efficiently solved by some convex optimization algorithms. By comparing with the method which without considering the location errors, the proposed one is able to provide a more accurate estimation. The performance of the proposed algorithm is examined by simulation results.
机译:在这项工作中,提出了基于存在位置误差存在的差分接收信号强度的固定目标定位。在所提出的算法中,认为接收器的确切位置不可用。通过考虑测量和位置误差,根据约束的加权最小二乘(CWLS)标准,将差分接收的信号强度(DRS)测量配制成与目标位置有关的形式。然而,由于CWLS问题的非凸性质,难以获得全局解决方案。然后应用了半纤维弛豫(SDR)技术以将CWLS问题放宽到半纤维编程问题(SDP)中,这可以通过一些凸优化算法有效地解决。通过与不考虑位置误差的方法进行比较,所提出的一个能够提供更准确的估计。通过仿真结果检查所提出的算法的性能。

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