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Application of dynamic optimisation to synchronous-generator excitation controllers

机译:动态优化在同步发电机励磁控制器中的应用

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Beginning with the equations in the electrical axes of a synchronous generator in the form v = Lpi + G¿ri + Ri, plant models are developed in a form that is particularly suitable for use in optimal-control-systems studies as applied to turbogenerator units. Algebraic state-variable transformations and a form of modal elimination are given in providing means of reflecting into formal optimising methods generator variables selected from considerations of the derivation of control signals from them. From this basis, a control strategy is derived using the matrix Riccati algorithm, and the fault-recovery response of a synchronous generator incorporating the strategy in its excitation controller is investigated. In computer-simulation studies, comparisons are made between the response of a strategy of the kind now in wide practical application, on the one hand, and the formally derived strategy, on the other. To provide means of validating much of the detail of plant modelling, the simulation studies correspond, as far as is possible, to plant and to controlled-fault conditions, for which site-test results are available.
机译:从形式为v = Lpi + G?ri + Ri的同步发电机电轴方程开始,以一种特别适合于应用于涡轮发电机组的最优控制系统研究的形式开发了工厂模型。 。给出代数状态变量转换和模态消除的形式,以提供将正式考虑到从发电机控制信号推导而来的发电机变量反映到形式优化方法中的手段。在此基础上,采用矩阵Riccati算法推导了控制策略,并研究了将其纳入励磁控制器的同步发电机的故障恢复响应。在计算机仿真研究中,一方面对目前在广泛的实际应用中这种策略的响应与另一方面对形式上衍生的策略的响应进行了比较。为了提供验证工厂建模的大部分细节的方法,模拟研究尽可能地对应于工厂和受控故障条件,对于这些条件,可以进行现场测试。

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