使用最大功率点跟踪器的电解光伏系统

J. Appelbaum, K. Khouzam, Y. Dagan
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引用次数: 6

摘要

电解是通过电流将物质分解成其化学成分的过程。该过程通常在低电压和高电流下通过电解槽在溶液中进行。带有电压源和内阻的电路可以表示电解槽的特性。一个例子是用于咸水游泳池和温泉池的氯化器,以产生用于消毒的原位氯。本文对光伏氯化器系统进行了分析,并比较了在有和没有最大功率点跟踪器(MPPT)的情况下系统的电荷量。如果电解系统负荷线位于光伏阵列最大功率线的左侧,则电解系统负荷线运行良好。在系统中使用MPPT可能会增加电解电池的电荷,因此可能会减少所需的PV板数量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photovoltaic Systems for Electrolysis Using a Maximum Power Point Tracker
Electrolysis is the process of decomposition of a substance into its chemical components by an electric current. The process takes place in a solution by an electrolytic cell usually at low voltage and high current. A circuit with a voltage source and an internal resistance may represent the characteristic of the electrolytic cell. An example is a chlorinator used in salt-water swimming and spa pools to produce in situ chlorine for disinfection. This paper deals with the analysis of a photovoltaic chlorinator system and compares the amount of electric charge delivered to systems when operating with and without a maximum power point tracker (MPPT). Good operation of the electrolytic system load line is obtained if the line is to the left of the maximum power line of the photovoltaic array. Using an MPPT in the system may increase the electric charge to the electrolytic cell, and thus, may reduce the required number of PV panels.
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