论文标题

集成卫星-UAV网络的面向控制的功率分配

Control-Oriented Power Allocation for Integrated Satellite-UAV Networks

论文作者

Lei, Chengleyang, Feng, Wei, Wang, Jue, Jin, Shi, Ge, Ning

论文摘要

这封信提出了一个传感通信 - 计算机控制(SC3)集成的卫星无人机(UAV)网络,该网络无人机配备了板载传感器,移动边缘计算(MEC)服务器,基站和卫星通信模块。像神经系统一样,这个集成的网络能够在偏远地区组织多个现场机器人,从而执行对人类危险的关键任务。为了通过多个SC3循环激活该神经系统,我们提出了面向控制的优化问题。与主要集中于通信指标的传统研究不同,我们解决了所有SC3循环的总和二次调节器(LQR)控制成本的总和分配问题。具体而言,我们显示了配制问题的凸度,并揭示了不同SC3环的最佳发射功率与内在熵率之间的关系。为了确保对稳定的情况,我们得出了封闭式解决方案,以易于实用应用。在证明了面向控制的功率分配的优势之后,我们进一步强调了它在经典的面向容量的水方法中的差异。

This letter presents a sensing-communication-computing-control (SC3) integrated satellite unmanned aerial vehicle (UAV) network, where the UAV is equipped with on-board sensors, mobile edge computing (MEC) servers, base stations and satellite communication module. Like the nervous system, this integrated network is capable of organizing multiple field robots in remote areas, so as to perform mission-critical tasks which are dangerous for human. Aiming at activating this nervous system with multiple SC3 loops, we present a control-oriented optimization problem. Different from traditional studies which mainly focused on communication metrics, we address the power allocation issue to minimize the sum linear quadratic regulator (LQR) control cost of all SC3 loops. Specifically, we show the convexity of the formulated problem and reveal the relationship between optimal transmit power and intrinsic entropy rate of different SC3 loops. For the assure-to-be-stable case, we derive a closed-form solution for ease of practical applications. After demonstrating the superiority of the control-oriented power allocation, we further highlight its difference with classic capacity-oriented water-filling method.

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