Adaptive device-free passive localization coping with dynamic target speed

Xiuyuan Zheng, J. Yang, Yingying Chen, Yu Gan
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引用次数: 18

Abstract

Device-free passive localization enables locating targets (e.g., intruders or victims) that do not carry any radio devices nor do they actively participate in the wireless localization process. This is because the wireless environments will get affected when people move into the area, which result in the changes of Received Signal Strength (RSS) of the wireless links. In this paper, we first show that the localization performance degrades significantly when people are moving in dynamic speeds. This is because existing studies in device-free passive localization system have an implicit assumption that the target is moving at a constant speed, which is not always true in practical scenarios. To cope with targets moving with dynamic speeds, we propose an adaptive speed change detection framework including three components: speed change detection, determination of time-window size and adaptive localization. Two speed change detection schemes have been developed to capture the changes of moving speed and adjust the time-window size adaptively to facilitate effective localization. We demonstrate that our framework is flexible to work with any device-free localization method using signal strength. Results from the real experiments confirm that our approach has over 30% improvement on both median and max localization error, under dynamically changing speed of the target.
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适应动态目标速度的无设备自适应被动定位
无设备无源定位可以定位不携带任何无线电设备也不积极参与无线定位过程的目标(例如,入侵者或受害者)。这是因为当人们进入该区域时,无线环境会受到影响,从而导致无线链路的接收信号强度(RSS)发生变化。在本文中,我们首先证明了当人们以动态速度移动时,定位性能会显著下降。这是因为现有的无设备被动定位系统的研究都有一个隐含的假设,即目标以恒定的速度运动,这在实际场景中并不总是正确的。为了应对目标的动态运动,提出了一种自适应速度变化检测框架,包括速度变化检测、时间窗大小确定和自适应定位三个部分。提出了两种速度变化检测方案来捕捉运动速度的变化,并自适应地调整时间窗大小,从而实现有效的定位。我们证明,我们的框架是灵活的工作与任何设备使用信号强度的定位方法。实际实验结果表明,在目标速度动态变化的情况下,我们的方法在中值和最大定位误差上都有30%以上的改进。
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