在反馈通信约束条件下优化标量系统性能的事件触发采样策略设计

IF 2.5 3区 计算机科学 Q2 AUTOMATION & CONTROL SYSTEMS International Journal of Control Automation and Systems Pub Date : 2024-05-09 DOI:10.1007/s12555-023-0039-x
Shaojie Lan, Qiang Ling
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引用次数: 0

摘要

本文旨在优化标量连续时间线性时变系统的性能,该系统的反馈信息通过速率受限的通信网络传输,网络延迟随机。由于反馈网络资源的限制,控制器无法精确、连续地获得反馈信息。此外,随机传输延迟会减少反馈信息量,降低相关系统的性能。为了解决上述问题,我们提出了一种能更有效利用传输资源的事件触发采样策略。与最优时间驱动采样策略和最优 Lebesgue 采样策略相比,我们的事件触发采样策略能在相同的传输限制条件下保证更好的性能。本文通过仿真进一步说明了所提出的事件触发采样策略的有效性。
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Event-triggered Sampling Strategy Design to Optimize the Performance of a Scalar System Under Feedback Communication Constraints

This paper aims to optimize the performance of a scalar continuous-time linear time-invariant system, whose feedback information is transmitted through a rate-constrained communication network with random network delay. Due to the limitation of feedback network resources, the feedback information can not be available to the controller precisely and continuously. Moreover, the random transmission delay will reduce the amount of feedback information and degrade the performance of the concerned system. To resolve the above issues, we propose an event-triggered sampling strategy that can utilize the transmission resources more efficiently. Compared with the optimal time-driven sampling strategies and the optimal Lebesgue sampling strategies, our event-triggered sampling strategy can guarantee better performance under the same transmission constraints. The effectiveness of the proposed event-triggered sampling strategies is further illustrated via simulations.

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来源期刊
International Journal of Control Automation and Systems
International Journal of Control Automation and Systems 工程技术-自动化与控制系统
CiteScore
5.80
自引率
21.90%
发文量
343
审稿时长
8.7 months
期刊介绍: International Journal of Control, Automation and Systems is a joint publication of the Institute of Control, Robotics and Systems (ICROS) and the Korean Institute of Electrical Engineers (KIEE). The journal covers three closly-related research areas including control, automation, and systems. The technical areas include Control Theory Control Applications Robotics and Automation Intelligent and Information Systems The Journal addresses research areas focused on control, automation, and systems in electrical, mechanical, aerospace, chemical, and industrial engineering in order to create a strong synergy effect throughout the interdisciplinary research areas.
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