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H_∞ filtering for networked control systems with quantization and multiple packet dropouts

机译:H_∞过滤具有量化和多个数据包丢失的网络控制系统

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This paper addresses the H_∞ filtering problem for networked control systems with quantization and multiple packet dropouts. The effects of measurement channel and control channel quantization as well as packet dropouts are considered simultaneously due to limited communication capacity and unreliable communication links. Stochastic variables satisfying the Bernoulli random binary distribution are utilized to model the multiple packet dropouts. Sufficient conditions are proposed such that the filtering error system is exponentially mean-square stable while the H_∞ disturbance rejection attenuation constraint is satisfied. Then, the explicit expression of the desired filter gains is described in terms of the solution to linear matrix inequalities (LMIs). Finally, a numerical example is employed to demonstrate the effectiveness of the proposed filter design approach.
机译:本文讨论了具有量化和多个数据包丢失的网络控制系统的H_∞过滤问题。 由于有限的通信容量和不可靠的通信链路,同时认为测量信道和控制信道量化以及分组丢失的影响。 满足Bernoulli随机二进制分布的随机变量用于模拟多个数据包丢失。 提出了足够的条件,使得滤波误差系统是指数相平的平均稳定,而H_∞扰动抑制衰减约束则满足。 然后,根据对线性矩阵不等式(LMI)的溶液来描述所需过滤器增益的显式表达。 最后,采用数值示例来展示所提出的滤波器设计方法的有效性。

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