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State feedback control for networked systems with mixed delays subject to quantization and dropout compensation

机译:具有混合延迟的网络系统的状态反馈控制,需要量化和压降补偿

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This paper deals with the state feedback control problem for networked systems with discrete and infinite distributed delays subject to quantization and packet dropout. The infinite distributed delay is introduced in the discrete networked domain. Also, it is assumed that system state is quantized before being communicated and the quantization error is described as sector bounded uncertainty. Moreover, a compensation scheme is proposed to deal with the effect of random packet dropout through communication network. Then, by constructing a novel Lyapunov-Krasovskii functional that accounts for mixed time delays, sufficient conditions for the existence of an admissible controller are established to ensure the asymptotical stability of the resulting closed loop system. Especially, the cone complementary linearization approach is exploited to solve the nonconvex feasibility problem. Finally, a numerical example is given to illustrate the proposed design method in this paper.
机译:本文针对具有离散和无限分布时延且受量化和丢包影响的网络系统的状态反馈控制问题进行了研究。在离散网络域中引入了无限的分布式延迟。而且,假设在通信之前系统状态已经被量化,并且量化误差被描述为扇区有界不确定性。此外,提出了一种补偿方案来处理通过通信网络的随机分组丢失的影响。然后,通过构造考虑了混合时间延迟的新型Lyapunov-Krasovskii函数,为允许的控制器的存在建立了充分的条件,以确保所得闭环系统的渐近稳定性。特别地,圆锥互补线性化方法被用来解决非凸可行性问题。最后,通过数值算例说明了本文提出的设计方法。

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