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An auxiliary LQG/LTR robust controller design for cogeneration plants

机译:用于热电联产电厂的辅助LQG / LTR鲁棒控制器设计

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A robust controller is designed to reduce the sensitivity of the frequency and the extraction steam pressure to the disturbance imposed on a cogeneration plant by using the LQG/LTR (linear quadratic Gaussian/loop transfer recovery) methodology. The natural frequency of the generator swing is analyzed to determine the frequency band of the disturbance due to the variation in load and utilized as a design specification for the LQG/LTR controller. The singular-value Bode diagram of the sensitivity transfer function matrix is shaped to reduce disturbance effects on the power system frequency and steam pressure according to the design specification. The high order LQG/LTR controller is reduced to a low order controller and implemented in a nonlinear cogeneration plant model. Simulation shows the performance of the LQG/LTR controller in disturbance rejection.
机译:通过使用LQG / LTR(线性二次高斯/回路转移恢复)方法,设计了一种鲁棒的控制器,以降低频率和抽汽压力对热电厂产生的干扰的敏感性。分析发电机摆幅的固有频率,以确定由于负载变化而引起的干扰的频带,并将其用作LQG / LTR控制器的设计规格。根据设计规范,对灵敏度传递函数矩阵的奇异值Bode图进行整形,以减少对电力系统频率和蒸汽压力的干扰影响。高阶LQG / LTR控制器简化为低阶控制器,并在非线性热电联产工厂模型中实现。仿真显示了LQG / LTR控制器在抑制干扰方面的性能。

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