论文标题

传输功率策略,用于多链接无线网络控制系统的随机稳定

Transmit power policies for stochastic stabilisation of multi-link wireless networked control systems

论文作者

Maass, Alejandro I., Nesic, Dragan, Postoyan, Romain, Varma, Vineeth S., Lasaulce, Samson

论文摘要

传输功率控制是无线网络中最重要的问题之一,该节点通常在有限的电池电源下运行。出于经济和生态原因,减少交流功耗是必不可少的。实际上,以不必要的高功率传输不仅会降低节点寿命,而且还会引入过度的干扰和电磁污染。无线社区中的现有工作主要集中在设计传输电源政策上,包括服务质量或网络容量等沟通方面。另一方面,无线网络控制系统(WNCSS)具有不同和特定的需求,例如稳定性,这些需求需要传输适合控制上下文的电源策略。控制社区中的传输功率设计最近引起了很多关注,可用的工作主要考虑具有单一链接视图的线性系统或特定类别的非线性系统。在本文中,我们提出了一个设计稳定发射功率水平的框架,该框架适用于更大类的非线性工厂,控制器和多连锁设置。通过利用通道成功概率与以非线性方式传输功率相关的事实,我们首先得出了将通道概率与传输速率相关联的闭环稳定性条件。接下来,我们将这些结果与众所周知和现实的干扰模型结合在一起,以提供一种设计方法,以稳定非线性和多线WNCS中的发射功率。

Transmit power control is one of the most important issues in wireless networks, where nodes typically operate on limited battery power. Reducing communicating power consumption is essential for both economic and ecologic reasons. In fact, transmitting at unnecessarily high power not only reduces node lifetime, but also introduces excessive interference and electromagnetic pollution. Existing work in the wireless community mostly focus on designing transmit power policies by taking into account communication aspects like quality of service or network capacity. Wireless networked control systems (WNCSs), on the other hand, have different and specific needs such as stability, which require transmit power policies adapted to the control context. Transmit power design in the control community has recently attracted much attention, and available works mostly consider linear systems or specific classes of non-linear systems with a single-link view of the system. In this paper, we propose a framework for the design of stabilising transmit power levels that applies to much larger classes of non-linear plants, controllers, and multi-link setting. By exploiting the fact that channel success probabilities are related to transmit power in a non-linear fashion, we first derive closed-loop stability conditions that relate channel probabilities with transmission rate. Next, we combine these results together with well-known and realistic interference models to provide a design methodology for stabilising transmit power in non-linear and multi-link WNCSs.

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