首页> 外文会议>Decision and Control and European Control Conference (CDC-ECC), 2011 50th IEEE Conference on >Disturbance and delay robustness of gradient feedback systems based on static noncooperative games with application to PEV charging
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Disturbance and delay robustness of gradient feedback systems based on static noncooperative games with application to PEV charging

机译:基于静态非合作博弈的梯度反馈系统的扰动和时延鲁棒性在PEV充电中的应用

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This paper considers interconnected dynamical systems derived from static noncooperative games. Designing such a gradient-type feedback aims at robustly driving state variables to the vicinities of Nash equilibria in the presence of uncertainty and variation. A recently-developed small-gain framework for integral input-to-state stable systems is employed to investigate global robustness of the gradient-type dynamical system with respect to disturbances and time-delays. Stability and robustness criteria are presented, and Lyapunov-Krasovskii functionals are constructed. The developed theory is applied to the plug-in electric vehicles charging problem of allocating the charging activities to the overnight electric demand valley for reducing the impact on the electric grid. A decentralized charging scheme with guaranteed robustness is proposed. Its usefulness is illustrated by numerical simulations.
机译:本文考虑了源于静态非合作博弈的互联动力学系统。设计这种梯度类型的反馈旨在在存在不确定性和变化的情况下,将状态变量稳固地驱动到纳什均衡附近。最近开发的用于整体输入到状态稳定系统的小增益框架用于研究梯度型动力系统相对于扰动和时滞的整体鲁棒性。提出了稳定性和鲁棒性标准,并构建了Lyapunov-Krasovskii功能。将该理论应用于插电式电动汽车的充电问题,即将充电活动分配给夜间用电需求谷,以减少对电网的影响。提出了一种具有鲁棒性的分散计费方案。数值模拟说明了其有效性。

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