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Ultimately Bounded Filtering for Time-Delayed Nonlinear Stochastic Systems with Uniform Quantizations under Random Access Protocol

机译:最终有限于随机接入协议下具有均匀量化的时延的非线性随机系统的界限滤波

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摘要

This paper investigates the ultimately bounded filtering problem for a kind of time-delay nonlinear stochastic systems with random access protocol (RAP) and uniform quantization effects (UQEs). In order to reduce the occurrence of data conflicts, the RAP is employed to regulate the information transmissions over the shared communication channel. The scheduling behavior of the RAP is characterized by a Markov chain with known transition probabilities. On the other hand, the measurement outputs are quantized by the uniform quantizer before being transmitted via the communication channel. The objective of this paper is to devise a nonlinear filter such that, in the simultaneous presence of RAP and UQEs, the filtering error dynamics is exponentially ultimately bounded in mean square (EUBMS). By resorting to the stochastic analysis technique and the Lyapunov stability theory, sufficient conditions are obtained under which the desired nonlinear filter exists, and then the filter design algorithm is presented. At last, two simulation examples are given to validate the proposed filtering strategy.
机译:本文研究了一种具有随机接入协议(RAP)和均匀量化效果(UQES)的一类时间延迟非线性随机系统的最终界限过滤问题。为了减少数据冲突的发生,使用RAP来调节共享通信信道上的信息传输。 RAP的调度行为的特征在于Markov链具有已知的过渡概率。另一方面,在经由通信信道发送之前,通过均匀量化器量化测量输出。本文的目的是设计非线性滤波器,使得在RAP和UQES的同时存在中,滤波误差动态是指数最终的均线(EUBMS)。通过借助随机分析技术和Lyapunov稳定性理论,获得了足够的条件,在其中存在所需的非线性滤波器,然后呈现过滤器设计算法。最后,给出了两个模拟示例以验证所提出的过滤策略。

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