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A fuzzy-based harmonic distortion assessment using time-varying harmonic parameter tracking method

机译:基于时变谐波参数跟踪的模糊谐波失真评估

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This paper presents a fuzzy-based harmonic distortion assessment method to apply modified steady-state harmonic limits to time-varying harmonics which can be estimated by Kalman recursive measurement scheme. For the time-varying harmonics, Kalman filters are suitable to estimate the basic component of harmonics with random noise such as interharmonic components. Using the estimated harmonic parameters as one of input data, the fuzzy logic application can calculate fuzzy total demand distortion index, which is an index to decide whether the current harmonic distortion is within the allowable limits or not. Simulations and results show that the Kalman filter can achieve precise and robust measurement of harmonic components and the proposed fuzzy logic application combined with Kalman filter has the advantage of being simple to implement and contains knowledge base. The proposed fuzzy total demand distortion index can be a very effective index to evaluate time-varying harmonic distortion and to limit time-varying harmonics for the purpose of harmonic measurement in the real world.
机译:本文提出了一种基于模糊的谐波失真评估方法,该方法将修正的稳态谐波限值应用于随时间变化的谐波,可以通过卡尔曼递归测量方案对其进行估计。对于随时间变化的谐波,卡尔曼滤波器适用于估计带有随机噪声的谐波的基本成分,例如间谐波成分。使用估计的谐波参数作为输入数据之一,模糊逻辑应用程序可以计算模糊总需求失真指数,该指数是确定当前谐波失真是否在允许范围内的指数。仿真和结果表明,卡尔曼滤波器可以实现对谐波分量的精确而鲁棒的测量,所提出的与卡尔曼滤波器结合的模糊逻辑应用具有易于实现且包含知识库的优点。提出的模糊总需求失真指数可以是评估时变谐波失真和限制时变谐波的非常有效的指标,以用于现实世界中的谐波测量。

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