Stochastic geometry analysis of IEEE 802.15.6 UWB WBAN performance with game theoretical power management

Eren Balevi, R. Gitlin
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引用次数: 1

Abstract

Inter-network interference in ultra-wideband (UWB) wireless body area networks (WBANs) is analyzed using stochastic geometry with the objective of quantifying the inherent interference tolerance of UWB WBANs in terms of the bit error probability. Such networks are expected to be common in the IoT segment of 5G networks and our methodology may be extended to other network configurations. Our results show that the amount of interference that can be tolerated depends on the node density of a Poisson point process and the transmission power. Moreover, decreasing the number of pulses per burst while transmitting a bit may increase the interference tolerance. On the other hand, UWB WBANs cannot tolerate significant amounts of interference in networks of ultra-densely deployed nodes. In these situations, there will be a significant amount of inter-network interference, and it is essential to adjust the power levels of all the nodes. With this objective, the transmission power of all nodes is decreased and their levels are determined by using a game theoretical approach; specifically with a non-cooperative continuous-kernel game. These optimized power levels not only reduce interference but also enhance the energy efficiency, which is of critical importance for WBANs.
基于博弈论功率管理的IEEE 802.15.6 UWB WBAN性能随机几何分析
利用随机几何分析了超宽带无线体域网(wban)的网络间干扰,目的是从误码率的角度量化UWB无线体域网的固有干扰容忍度。这样的网络预计将在5G网络的物联网部分中很常见,我们的方法可能会扩展到其他网络配置。我们的结果表明,可以容忍的干扰量取决于泊松点过程的节点密度和传输功率。此外,在传输一个比特时减少每个突发的脉冲数可以增加干扰容忍度。另一方面,UWB wban不能容忍超密集部署节点网络中的大量干扰。在这些情况下,会有大量的网络间干扰,调整所有节点的功率电平是必要的。在此目标下,所有节点的传输功率降低,并使用博弈论方法确定其水平;特别是对于一个非合作连续核对策。这些优化的功率水平不仅减少了干扰,而且提高了能源效率,这对wban至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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