Wang Yezheng, Wang Zidong, Zou Lei, Dong Hongli
IEEE Trans Cybern. 2022 Oct;52(10):9951-9963. doi: 10.1109/TCYB.2020.3036364. Epub 2022 Sep 19.
In this article, we consider the H proportional-integral (PI) state estimation (SE) problem for discrete-time T-S fuzzy systems subject to transmission delays, external disturbances, and redundant channels. Multiple redundant communication channels are utilized between the sensors and the remote estimator to enhance the reliability of data transmissions. In order to characterize the transmission delays in network-based communication, a family of random variables with partly known probabilities, which are independent and identically distributed, is adopted to describe the random behavior of the transmission delays with the redundant channels. The objective of this work is to put forward a PI state estimator such that the dynamics of the estimation error is exponentially mean-square stable and satisfies the prescribed H performance index of the disturbance attenuation/rejection. By employing the stochastic analysis approach, the error dynamics of the SE under the proposed state estimator is analyzed and sufficient conditions are obtained to ensure the existence of the required PI state estimator. Furthermore, the desired estimator parameters are derived by solving a nonlinear optimization problem. Finally, two simulation examples are exploited to demonstrate the validity of the proposed SE scheme.
在本文中,我们考虑了受传输延迟、外部干扰和冗余通道影响的离散时间T-S模糊系统的H比例积分(PI)状态估计(SE)问题。传感器与远程估计器之间利用多个冗余通信通道来提高数据传输的可靠性。为了表征基于网络通信中的传输延迟,采用一族具有部分已知概率且独立同分布的随机变量来描述冗余通道传输延迟的随机行为。这项工作的目标是提出一种PI状态估计器,使得估计误差动态在指数均方意义下稳定,并满足规定的干扰衰减/抑制H性能指标。通过采用随机分析方法,分析了所提出状态估计器下SE的误差动态,并获得了确保所需PI状态估计器存在的充分条件。此外,通过求解一个非线性优化问题来推导所需的估计器参数。最后,利用两个仿真例子来证明所提出的SE方案的有效性。