Energy-to-peak quantized filtering for T-S fuzzy systems with event-triggered-based weighted try-once-discard protocol: The finite-time case

IF 3.5 2区 数学 Q1 MATHEMATICS, APPLIED
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引用次数: 0

Abstract

The paper addresses the issue of the finite-time energy-to-peak quantized filtering for Takagi-Sugeno (T-S) fuzzy systems under event-triggered-based weighted try-once-discard (WTOD) protocol, considering deception attacks in the network. To process the measurement output and schedule the transmission sequence for relieving the communication burden, a dynamic quantizer and an event-triggered-based WTOD protocol are synthesized to determine whether the quantified measurement value of the sensor should be sent and which ones to be delivered. The main intention of this paper is to construct a mode-dependent filter such that the filtering error system is stochastically stable under the finite-time bounded and meets an energy-to-peak performance levels. The sufficient conditions for the existence of the admissible filter criterion are formulated, and the specific filter gains are obtained through solving a convex optimization problem. Finally, a practical example is used to evaluate the theoretical design and analysis.

采用基于事件触发的加权试一弃协议的 T-S 模糊系统能量-峰值量化滤波:有限时间情况
本文考虑到网络中的欺骗攻击,探讨了在基于事件触发的加权试一弃(WTOD)协议下,高木-菅野(Takagi-Sugeno,T-S)模糊系统的有限时间能量-峰值量化滤波问题。为了处理测量输出并安排传输顺序以减轻通信负担,本文合成了一个动态量化器和一个基于事件触发的 WTOD 协议,以确定是否应发送传感器的量化测量值以及发送哪些测量值。本文的主要意图是构建一个与模式相关的滤波器,使滤波误差系统在有限时间约束下随机稳定,并满足能-峰性能水平。本文提出了可接受滤波器准则存在的充分条件,并通过求解凸优化问题得到了具体的滤波器增益。最后,通过一个实际例子对理论设计和分析进行了评估。
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来源期刊
CiteScore
7.90
自引率
10.00%
发文量
755
审稿时长
36 days
期刊介绍: Applied Mathematics and Computation addresses work at the interface between applied mathematics, numerical computation, and applications of systems – oriented ideas to the physical, biological, social, and behavioral sciences, and emphasizes papers of a computational nature focusing on new algorithms, their analysis and numerical results. In addition to presenting research papers, Applied Mathematics and Computation publishes review articles and single–topics issues.
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