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首页> 外文期刊>IEEE Transactions on Power Systems >Robust Design of a TCSC Oscillation Damping Controller in a Weak 500-kV Interconnection Considering Multiple Power Flow Scenarios and External Disturbances
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Robust Design of a TCSC Oscillation Damping Controller in a Weak 500-kV Interconnection Considering Multiple Power Flow Scenarios and External Disturbances

机译:考虑多种潮流和外部干扰的弱500 kV互连中TCSC振荡阻尼控制器的鲁棒设计

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The power oscillation damping (POD) controllers implemented in the two thyristor controlled series compensators of the Brazilian North-South (NS) interconnection, in the year 1999, were solely intended to damp the low-frequency NS oscillation mode. These controllers are still under operation and are derived from the modulus of the active power flow in the NS line that is phase-lagged at the frequency of the NS mode and may experience relatively large excursions generated by exogenous disturbances. This paper utilizes the same 1999 data to compare the performance of a proposed robust POD controller design with those of two conventional designs. A recent robust control synthesis algorithm used in this work is based on a nonsmooth optimization technique and has the capability to handle various controller structures, including reduced-order, and to deal with time-domain constraints on both controlled and measured outputs. Moreover, the nonsmooth design technique encompasses multiple operating conditions subject to various test signals, hence building a truly time-domain multi-scenarios approach. According to the results discussed hereafter, this is a key advantage in the industrial context of increasing demand for performance and robustness. The described results relate to a large-scale system model used in the feasibility studies for that interconnection.
机译:1999年,在巴西南北(NS)互连的两个晶闸管控制串联补偿器中实现的功率振荡阻尼(POD)控制器仅用于阻尼低频NS振荡模式。这些控制器仍处于运行状态,并且是从NS线路中有功功率的模量得出的,该模量在NS模式的频率处出现相位滞后,并且可能会经历由外源性干扰产生的相对较大的偏移。本文利用相同的1999年数据将建议的鲁棒POD控制器设计与两种常规设计的性能进行比较。在这项工作中使用的一种最新的鲁棒控制综合算法是基于非平滑优化技术的,并且具有处理各种控制器结构(包括降阶)的能力,并能够处理受控和测量输出的时域约束。此外,非平稳的设计技术涵盖了受各种测试信号影响的多种工作条件,因此构建了真正的时域多场景方法。根据下文讨论的结果,这是在工业环境中对性能和耐用性要求不断提高的关键优势。所描述的结果与用于该互连的可行性研究中使用的大规模系统模型有关。

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