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首页> 外文期刊>Electric power systems research >Design of a minimum sensitivity controller for a power system under different operating conditions taking into account the effect of local load characteristics
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Design of a minimum sensitivity controller for a power system under different operating conditions taking into account the effect of local load characteristics

机译:考虑到局部负载特性的影响,在不同工作条件下为电力系统设计最小灵敏度控制器

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摘要

The effect of local load characteristics on synchronous machine stability has been studied using the analytical expressions developed for damping and synchronizing torques. The inclusion of system loads may lead to instability conditions due to negative damping. Improvement of power system stability can be achieved by sending an additional signal from an optimal pole placer controller to the input of the excitation and mechanical systems of the synchronous machines. The proposed pole placer can allocate the sytem poles to desired prescribed locations while ensuring minimum sensitivity of such poles to operating condition variations over a wide range. Controller parameters are determined by minimization of an objective function using the Powell-Botm optimization routine. Time response simulations are used to illustrate the dynamic behavior of the controlled system with wide variations of operating conditions, different local load characteristics and various exciter gains.
机译:使用为阻尼和同步转矩而开发的解析表达式,研究了局部负载特性对同步电机稳定性的影响。由于负阻尼,包含系统负载可能会导致不稳定状态。可以通过从最佳磁极放置控制器向同步电机的励磁和机械系统的输入发送附加信号来提高电力系统的稳定性。所提出的杆放置器可以将系统杆分配到期望的规定位置,同时确保这种杆对大范围的工作条件变化的最小敏感性。使用Powell-Botm优化例程通过最小化目标函数来确定控制器参数。时间响应仿真用于说明受控条件的动态行为,该条件的运行条件变化很大,局部负载特性不同,励磁机增益也不同。

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