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A HARMONIC RESONANCE MITIGATION DECISION USING DECISION THEORY

机译:使用决策理论的谐振共振减缓决定

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A three-stage process for making a harmonic resonance mitigation decision in an end-user network is developed. Different sizes of power factor correction banks cause various levels of severity of harmonic resonance which may or may not damage capacitors, Based on the level of severity two new indices are developed to guide in making the appropriate decision. The first index is used to assess the severity of resonance and the second to make a mitigation decision, In Stage 1, a quantitative model building approach is used to structure the decision problem taking the harmonic resonance severity index as the objective function. In Stage 2, Utility Theory is chosen as the decision criterion to select the most desirable capacitor size. In Stage 3, the mitigation index is applied to assess whether mitigation is needed or not for the chosen capacitor. A ease study, based on a deterministic model is conducted to demonstrate the effectiveness of applying this new decision theory to harmonic resonance.
机译:开发了在最终用户网络中进行谐波共振缓解决策的三阶段过程。不同尺寸的功率因数校正库导致谐振谐振的各种严重程度,这可能或可能不会损坏电容器,基于SERECTIACS的水平,以开发出制作适当的决定。第一索引用于评估共振的严重程度和第二级,在第1阶段进行缓解决定,用于将谐波共振严重性指数作为目标函数的决策问题构成决策问题。在第2阶段,选择实用理论作为选择最理想的电容器尺寸的判定标准。在第3阶段,应用缓解指数以评估所选择的电容是否需要减轻抑制。基于确定性模型的易于研究,以证明将这种新决策理论应用于谐波共振的有效性。

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