基于矩阵变换器的太阳能光伏系统无功补偿采用正弦脉宽调制

K. Raja, K. Vijayakumar, S. Kannan
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引用次数: 0

摘要

无功功率是影响交流电力系统运行的一个重要问题。如何在使有功功率容量最大化的最小无功功率流和维持适当系统电压分布的足够无功功率流之间取得平衡一直是一个挑战。本文主要研究利用太阳能光伏发电系统对无功功率进行补偿。交流电压的产生采用单相矩阵变换器。单相矩阵变换器既可用作整流器,也可用作逆变器。同样的系统可以用于利用自由能源(太阳能)的实际电力交换,从而最大限度地减少公用事业电力供应。利用矩阵变换器可以实现电池充电时的双向能量流动。矩阵变换器的使用降低了总谐波失真,提高了输出电压的质量。正弦脉宽调制(SPWM)用于向矩阵变换器产生脉冲。所提出的有功和无功补偿的数字控制提高了系统的整体效率和可靠性。
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Matrix converter based solar photo voltaic system for reactive power compensation using sinusoidal pulse width modulation
Reactive power is a subject of great concern for the operation of Alternating Current (AC) power systems. It has always been a challenge to obtain the balance between a minimum amount of reactive power flow to maximize capacity for active power flow and a sufficient amount of reactive power flow to maintain a proper system voltage profile. This work mainly deals with the compensation of reactive power by using Solar Photovoltaic Power System. Single-phase matrix converter is used for developing AC voltage. Single-phase matrix converter can be used as a Rectifier and as an Inverter. The same system could be used for real power exchange utilizing free energy (Solar) thus minimizing the utility power supply. Bidirectional energy flow is possible with matrix converter for battery charging. Use of matrix converter improves the quality of output voltage with reduced Total Harmonic Distortion. Sinusoidal Pulse Width Modulation (SPWM) is used for generating pulses to the matrix converter. Digital control of proposed real and reactive power compensation improves the overall efficiency of the system and reliability.
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