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Collaborative Research: New Communication Infrastructures For Networked Coordinated Control

Collaborative Research: New Communication Infrastructures For Networked Coordinated Control
协作研究:网络协调控制的新型通信基础设施
批准号:
0848256
负责人:
Anna Scaglione
金额:
$19.79万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-07-01 至 2011-09-30

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中文摘要
翻译
本项目的重点是为多车辆系统的协调控制服务的通信网络的综合设计和分析。考虑一组配备了本地控制器和无线无线电的车辆,它们被设置为自行安排、稳定和控制其集体运动。为了实现全局期望的编队行为,给定车辆上的控制器必须对其他车辆的运动和状态做出响应。事实上,系统组件之间存在复杂的耦合:网络体系结构、通信协议和控制器设计。这些部件的一体化设计是本项目的目标。设计网络控制系统的根本挑战是,通信和控制任务通常不能被认为是彼此解耦而不损失最优性的。然而,模块化解决方案可以潜在地为高效解决方案的性质提供重要的见解。该项目通过将问题分解为模块任务,从实际可行的角度处理综合通信和控制问题。引入的模块化程度,尽管它不是最优的,但可以实现实用和高效的解决方案,以及对内在权衡的洞察。由于所产生的问题存在于通信和控制研究的交叉点,该项目的组成部分通过以下具体任务汇集了分散控制、联网和信号处理方面的专业知识:1)动态图形的非线性协调控制,2)服务于协调控制的无线网络的跨层优化,3)分散通信和控制的物理层解决方案,以及4)在华盛顿大学3D自主水下机器人试验台上进行的实验性能评估。
英文摘要
The focus of this project is integrated design and analysis of communication networks in service of coordinated control of multi-vehicle systems. Consider a set of vehicles, equipped with local controllers and wireless radios, that is set to arrange itself, to stabilize, and to control its collective motion. To achieve globally desirable formation behavior, the controller on a given vehicle must respond to the motion and state of others.In fact, there exists a complicated coupling among system components: network architecture, communications protocols, and controller design. The integrated design of these components is the objective of this project. The fundamental challenge in designing networked control systems is that the tasks of communication and control, in general, cannot be considered decoupled from each other without loss of optimality. However, modular solutions can potentially provide significant insights into the nature of efficient solutions. This project addresses the problem of integrated communications and control from a practically viable perspective by decomposing the problem into modular tasks. The introduced degree of modularity, despite its sub-optimality, enables practical and efficient solutions as well as insights into the inherent trade-offs. Because the questions that arise lie at the intersection between communications and controls research, the components of the project bring together expertise in decentralized control, networking, and signal processing through the following specific tasks: 1) Nonlinear coordinated control over dynamic graphs, 2) Crosslayer optimization of wireless networks in service of coordinated control, 3) Physical layer solutions to decentralized communication and control, and 4) Experimental performance evaluation on a 3D autonomous underwater vehicle test-bed at the University of Washington.
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