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DECENTRALIZED CONTROL OF MULTITERMINAL HVDC SYSTEMS EMBEDDED IN AC NETWORKS.

机译:交流网络中包含的多端子HVDC系统的分散控制。

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A continuations approach to eigenvalue assignment through dynamic decentralized output feedback is developed. The underlying system model is the Component Connection Model. In such a context it is possible to parameterize the connection information and derive a differential equation whose solution trajectory characterizes appropriate decentralized feedback gains.;The design technique is used to investigate the pole placement problem in a two-machine, infinite bus, two-terminal HVDC system. Joint current modulation at the rectifier and voltage modulation at the inverter is utilized. It is shown by eigenvalue analysis and analog simulation that this modulating strategy is more effective than decentralized current modulation alone: greater flexibility in assigning the eigenvalues, smaller DC current swings.;Finally the technique is used in the design of decentralized power modulation in multiterminal HVDC systems. Decentralized output feedback gains are computed to reassign specified eigenvalues so that stability margins and dynamic responses are improved. A computer simulation of an integrated AC/DC power system demonstrates resulting control performance for typical disturbances. Comparisons are made with centralized modulation and several designs with limited communications. The nonlinear coordination problem of the power modulation is briefly addressed.
机译:开发了一种通过动态分散输出反馈来进行特征值分配的连续方法。底层系统模型是组件连接模型。在这种情况下,可以对连接信息进行参数化,并导出一个微分方程,该方程的解轨迹表征了适当的分散式反馈增益。该设计技术用于研究两机,无穷大总线,两端子的极点布置问题高压直流输电系统。利用整流器处的联合电流调制和逆变器处的联合电压调制。特征值分析和模拟仿真表明,这种调制策略比单独的分散电流调制更有效:分配特征值时具有更大的灵活性,较小的DC电流摆幅。最后,该技术被用于设计多端HVDC的分散功率调制系统。计算分散的输出反馈增益以重新分配指定的特征值,从而提高稳定性裕度和动态响应。集成AC / DC电源系统的计算机仿真演示了针对典型干扰的最终控制性能。通过集中调制进行比较,并以几种通信受限的设计进行比较。简要讨论了功率调制的非线性协调问题。

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