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Power system transient stability design using reachability based stability-region computation

机译:电力系统暂态稳定设计,基于可达性的稳定域计算

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This paper presents a reachability based method to compute the stability region of a stable equilibrium point and uses it to design controls for transient stability of power systems. First, a Hamilton-Jacobi-Isaacs (HJI) partial differential equation (PDF) is obtained for the propagation of the backward reachability set of a nonlinear system. This computation when used to obtain the backward reachable set of a stable equilibrium point yields its stability region. Using the stability regions of various discrete controls (also called modes) transient stability design is performed. For example the effectiveness of a control can be verified by checking whether a post-fault initial state is in the stability region of the system with that control switched on. We illustrate our method by applying it to a single-machine infinite-bus system equipped with series and shunt capacitive compensation.
机译:本文提出了一种基于可达性的方法,用于计算稳定平衡点的稳定性区域,并使用它来设计电力系统瞬态稳定性的控制。首先,获得汉密尔顿 - 雅各比-ISAACS(HJI)部分微分方程(PDF)以用于非线性系统的后退可达性集的传播。该计算用于获得稳定平衡点的后向可达集合产生其稳定区域。使用各种离散控制的稳定区域(也称为模式)瞬态稳定性设计。例如,可以通过检查故障后初始状态在系统的稳定区域中,验证控制的有效性。我们通过将其应用于配备有串联和分流电容补偿的单机无限总线系统来说明我们的方法。

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