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Power-based localization in correlated log-normal fading aided by conditioning measurements

机译:条件测量辅助相关对数正态衰落中基于功率的定位

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The paper addresses the performance evaluation via the Cramer-Rao Lower Bound (CRLB) of power-based localization of a source in spatially-correlated log-normal propagation. The novel element is the inclusion and assessment of the impact of conditioning measurements on such performance. The proposed model parameterizes performance by both the sensor topology (density, positioning) producing the current measurements as well as by conditioning measurements (essentially, prior or training data) which reduce the statistical uncertainty in the model. Experimental results for indoor and outdoor environments are presented which quantify the expected localization accuracy, as well as identify practical issues to be further addressed. One main concern is the quantification of scaling on required sensor-network size for achieving a pre-specified localization accuracy.
机译:本文通过Cramer-Rao下界(CRLB)进行性能评估,该评估基于空间相关对数正态传播中源的基于功率的定位。新颖的元素是包含和评估条件测量对此类性能的影响。所提出的模型通过产生当前测量值的传感器拓扑结构(密度,位置)以及调节测量值(本质上是先验数据或训练数据)来参数化性能,从而减少了模型中的统计不确定性。给出了室内和室外环境的实验结果,这些结果量化了预期的定位精度,并确定了有待进一步解决的实际问题。一个主要关注的问题是量化所需传感器网络尺寸的缩放比例,以实现预先指定的定位精度。

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