无线传感器网络中具有分布式移动元件的传感器波束形成

W. Lintz, J. McEachen, M. Tummala
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引用次数: 11

摘要

分析了通过无线传感器网络连接的独立移动天线的传感器阵列波束形成性能,并提出了一种性能度量,能够缓解动态节点位置对阵列因子形成的扰动。无线网络扩展了阵列设计的可能性,包括无线连接的元素;然而,元素的静态定位仍然是确定和应用相干阵列波束形成所必需的权重的核心。无线网络允许参与者移动,但应用的权重必须为每次位置更新进行改革,以保持目标焦点。确定性运动允许简单的权重转换,而随机元素运动需要大量的网络能量来通过位置更新来改变权重。分析了阵列因子与随机单元运动之间的关系。在运动和阵列因素之间建立了一种关系,即朝向预定目标矢量的幅度概率。所提出的关系被证明是可评估的,有助于减少网络流量和处理开销,同时对目标产生可接受的操作增益。在整个网络的传感器能量使用方面,该结果与恒定位置更新模型相比具有优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sensor beamforming with distributed mobile elements in a wireless sensor network
Sensor array beamforming performance using independently mobile antennas connected through a wireless sensor network is analyzed where a performance metric is proposed enabling mitigation of the perturbation of array factor formation caused by dynamic node positions. Wireless networking has expanded array design possibilities to include wirelessly connected elements; however, static positioning of elements remains central to determination and application of weights necessary for coherent array beam formation. Wireless networks allow for participant mobility, but applied weights must be reformed for each position update in order to maintain target focus. While deterministic motion allows easy weight translation, random element motion requires significant network energy to reform weights through position updates. The relationship between array factor and stochastic element motion is analyzed. A relationship is developed between motion and array factor magnitude probability towards the intended target vector. The relationship proposed is shown to be assessable and useful for reducing network traffic and processing overhead and while producing operationally acceptable gain towards the target. The result compares favorably against a constant position updating model in terms of sensor energy usage across the network.
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