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Balancing Authority Area Model and its Application to the Design of Adaptive AGC Systems

机译:平衡权限区模型及其在自适应AGC系统设计中的应用

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In this paper, we develop a reduced-order model for synchronous generator dynamics via selective modal analysis. Then, we use this reduced-order model to formulate a balancing authority (BA) area dynamic model. Next, we use the BA area model to design an adaptive automatic generation control (AGC) scheme, with self-tuning gain, that decreases the amount of regulation needed and potentially reduces the associated costs. In particular, we use the BA area model to derive a relationship between the actual frequency response characteristic (AFRC) of the BA area, the area control error, the system frequency, and the total generation. We make use of this relationship to estimate the AFRC online, and set the frequency bias factor equal to the online estimation. As a result, the AGC system is driven by the exact number of MW needed to restore the system frequency and the real power interchange to the desired values. We demonstrate the proposed ideas with a single machine infinite bus, the 9-bus 3-machine Western Electricity Coordinating Council (WECC), and a 140-bus 48-machine systems.
机译:在本文中,我们通过选择性模态分析为同步发电机动力学开发了降阶模型。然后,我们使用此降阶模型来制定平衡权限(BA)区域动态模型。接下来,我们使用BA区域模型设计具有自适应增益的自适应自动发电控制(AGC)方案,该方案减少了所需的调节量并潜在地降低了相关成本。特别是,我们使用BA区域模型来推导BA区域的实际频率响应特性(AFRC),区域控制误差,系统频率和总发电量之间的关系。我们利用这种关系在线估算AFRC,并将频偏因子设置为等于在线估算。结果,AGC系统由将系统频率和有功功率交换恢复到所需值所需的确切兆瓦数驱动。我们用单机无限总线,9总线3机西方电力协调委员会(WECC)和140总线48机系统演示了所提出的想法。

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