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Fundamental Limits of Wideband Localization— Part II: Cooperative Networks

机译:宽带本地化的基本限制-第二部分:合作网络

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The availability of position information is of great importance in many commercial, governmental, and military applications. Localization is commonly accomplished through the use of radio communication between mobile devices (agents) and fixed infrastructure (anchors). However, precise determination of agent positions is a challenging task, especially in harsh environments due to radio blockage or limited anchor deployment. In these situations, cooperation among agents can significantly improve localization accuracy and reduce localization outage probabilities. A general framework of analyzing the fundamental limits of wideband localization has been developed in Part I of the paper. Here, we build on this framework and establish the fundamental limits of wideband cooperative location-aware networks. Our analysis is based on the waveforms received at the nodes, in conjunction with Fisher information inequality. We provide a geometrical interpretation of equivalent Fisher information (EFI) for cooperative networks. This approach allows us to succinctly derive fundamental performance limits and their scaling behaviors, and to treat anchors and agents in a unified way from the perspective of localization accuracy. Our results yield important insights into how and when cooperation is beneficial.
机译:位置信息的可用性在许多商业,政府和军事应用中非常重要。通常通过使用移动设备(代理)和固定基础结构(锚)之间的无线电通信来完成本地化。但是,精确确定座席位置是一项艰巨的任务,尤其是在由于无线电阻塞或有限的锚定部署而导致的恶劣环境中。在这些情况下,座席之间的合作可以显着提高定位准确性并降低定位中断的可能性。本文的第一部分已经建立了分析宽带本地化基本局限性的通用框架。在此,我们以该框架为基础,并建立了宽带协作位置感知网络的基本限制。我们的分析基于节点接收到的波形以及Fisher信息不等式。我们为合作网络提供等效Fisher信息(EFI)的几何解释。这种方法使我们能够简洁地得出基本性能限制及其缩放行为,并从定位精度的角度以统一的方式对待锚和代理。我们的结果对如何以及何时使合作有益产生了重要的见解。

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