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Strategic capacitor placement in distribution systems by minimisation of harmonics amplification because of resonance

机译:通过最小化谐振引起的谐波放大,在配电系统中进行战略性电容器布置

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摘要

The capacitor placement problem (CPP) has been widely studied throughout the years. However, traditional methodologies either do not consider non-linear loads in the formulations or are highly dependent on the spectrum of the harmonic currents. Therefore the traditional methodologies have become unsuitable for distribution system planning studies. The proposed approach formulates the CPP as a multi-objective optimisation model while including economic and technical aspects in the minimisation process. An additional objective function introduces a quadratic minimisation of the voltage harmonic distortions produced by the harmonic currents drawn by non-linear loads according to the IEEE Std. 519??1992 limits. A new constraint based on a resonance index (RI) is also introduced as a form to extend the capacitors?? lifetime. Furthermore, an aging model of capacitor dielectric insulation under a non-sinusoidal waveform scenario is used to estimate the expected real lifetime of capacitors. The proposed methodology was exhaustively tested on a 69-bus system and the results show that the methodology is adequate for planning capacitors and eliminates the need to focus in great detail on harmonic system data.
机译:多年来,电容器放置问题(CPP)已得到广泛研究。但是,传统方法要么不在配方中考虑非线性负载,要么高度依赖于谐波电流的频谱。因此,传统方法已变得不适用于配电系统规划研究。所提出的方法将CPP公式化为多目标优化模型,同时在最小化过程中包括了经济和技术方面。附加的目标函数根据IEEE Std对非线性负载产生的谐波电流产生的电压谐波失真进行二次最小化。 519-1992年的限制。还引入了一种基于谐振指数(RI)的新约束,作为扩展电容器的一种形式。一生。此外,在非正弦波形情况下,电容器介电绝缘的老化模型用于估计电容器的预期实际寿命。所提出的方法已在69总线系统上进行了详尽的测试,结果表明该方法足以规划电容器,并且无需将重点放在谐波系统数据上。

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