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Superconducting magnetic energy storage controller design and stability analysis for a power system with various load characteristics

机译:具有各种负载特性的电力系统超导磁储能控制器设计与稳定性分析

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摘要

A simultaneous active power and reactive power (P-Q) control scheme of superconducting magnetic energy storage (SMES) unit is proposed to enhance the damping a of a power system. In order to control the P-Q modulation to the power system, a proportional-integral (PI) controller is used to provide a suuplementary damping signal. The parameters of the PI controller are determined by a systematic pole assignment method based on model control theory. Both static load and dynamic load are included to improve the system model fidelity. Eigenvalue analysis and time-domain nonlinear simulation, using a power system incorporating a composite load, are illustrated to validate the effectiveness of the proposed PI SMES controller for the damping of the studied system over a wide range of operating conditions. The control scheme also shows that the stability margin of the power system is expanded.
机译:为了提高电力系统的阻尼a,提出了超导磁储能(SMES)单元同时有功和无功(P-Q)控制方案。为了控制对电源系统的P-Q调制,比例积分(PI)控制器用于提供辅助阻尼信号。 PI控制器的参数通过基于模型控制理论的系统极点分配方法确定。静态负载和动态负载都包括在内,以提高系统模型的保真度。说明了使用结合了复合负载的电力系统进行的特征值分析和时域非线性仿真,以验证所提出的PI SMES控制器在宽范围的工作条件下对所研究系统进行阻尼的有效性。控制方案还表明,电力系统的稳定性裕度得到了扩大。

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