无线定位网络中的鲁棒资源分配

Wen J. Li, Tingting Zhang, Yuan Shen, A. Molisch, Qinyu Zhang
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引用次数: 12

摘要

可靠和准确的“代理”节点位置估计对于许多无线应用至关重要。通常,代理通过相对于已知位置的“锚”节点进行测距来执行位置估计。在基于距离的定位技术中,系统精度和能量效率受到发射功率和信号带宽的双重影响。因此,我们研究了无线定位网络中的功率和带宽联合分配问题。首先建立了一个通用的优化模型,并证明了该模型是非凸的。提出了一种基于单凝聚法的近似算法来解决这一问题。然后,我们在存在代理位置不确定性的情况下制定了问题的鲁棒对应物。提出了一种低复杂度的方法来解决鲁棒JPBA问题。数值结果验证了算法的准确性和鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robust resource allocation in wireless localization networks
Reliable and accurate position estimation of “agent” nodes is essential for many wireless applications. Typically agents perform position estimation through ranging with respect to “anchor” nodes with known positions. In range-based localization techniques, system accuracy and energy efficiency are affected by both transmit power and signal bandwidth. We thus investigate the joint power and bandwidth allocation (JPBA) problems in wireless localization networks. We first formulate a general optimization model, which is proved to be non-convex. An approximate algorithm based on single condensation method is proposed to solve the problem. We then formulate the robust counterpart of the problem in the presence of uncertainty of the agents' positions. An low complexity method is also proposed to solve the robust JPBA problem. Numerical results validate the accuracy and robustness of the proposed algorithms.
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