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The Error Propagation Analysis of the Received Signal Strength-based Simultaneous Localization and Tracking in Wireless Sensor Networks

机译:无线传感器网络中基于接收信号强度的同时定位和跟踪的误差传播分析

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摘要

Simultaneous localization and tracking (SLAT) in wireless sensor networks (WSNs) involves tracking the mobile target while calibrating the nearby sensor node locations. In practice, a localization error propagation (EP) phenomenon will arise, due to the existence of the latest tracking error, target mobility, measurement error and reference node location errors. In this case, the SLAT performance limits are crucial for the SLAT algorithm design and WSN deployment, and the study of localization EP principle is desirable. In this paper, we focus on the EP issues for the received signal strength-based SLAT scheme, where the measurement accuracy is assumed to be spatialtemporal- domain doubly random due to the target mobility, environment dynamics and different surroundings at different reference nodes. Firstly, the Cramer-Rao lower bound (CRLB) is derived to unveil both the target tracking EP and the node location calibration EP. In both cases, the EP principles turn out to be in a consistent form of the Ohm’s Law in circuit theory. Secondly, the asymptotic CRLB analysis is then presented to reveal that both EP principles scale with the inverse of sensor node density. Meanwhile, it is shown that, the tracking and calibration accuracy only depends on the expectation of the measurement precision. Thirdly, the convergence conditions, convergence properties and the balance state of the target tracking EP and the location calibration EP are examined to shed light on the EP characteristics of the SLAT scheme. Finally, numerical simulations are presented to corroborate the EP analysis.
机译:无线传感器网络(WSN)中的同时定位和跟踪(SLAT)涉及在校准附近的传感器节点位置的同时跟踪移动目标。实际上,由于最新的跟踪误差,目标移动性,测量误差和参考节点位置误差的存在,将出现定位误差传播(EP)现象。在这种情况下,SLAT性能限制对于SLAT算法设计和WSN部署至关重要,因此研究定位EP原理是可取的。在本文中,我们将重点放在基于接收信号强度的SLAT方案的EP问题上,其中由于目标移动性,环境动力学和不同参考节点的不同环境,测量精度被假定为时空域双随机的。首先,推导了Cramer-Rao下界(CRLB),以揭示目标跟踪EP和节点位置校准EP。在这两种情况下,EP原理在电路理论中都是欧姆定律的一致形式。其次,然后进行渐近CRLB分析,以揭示这两个EP原理都与传感器节点密度的倒数成比例。同时表明,跟踪和校准精度仅取决于对测量精度的期望。第三,检查目标跟踪EP和位置校准EP的收敛条件,收敛特性和平衡状态,以阐明SLAT方案的EP特性。最后,通过数值模拟证实了EP分析。

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    Zhou B; Chen Q; Xiao Pei;

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  • 年度 2017
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