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LabVIEW based emulation of Photovoltaic array to study maximum power point tracking algorithms

机译:基于LabVIEW的光伏阵列仿真,研究最大功率点跟踪算法

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Testing, tuning and validation of maximum power point tracking (MPPT) and distributed MPPT (DMPPT) algorithms for Photovoltaic (PV) sources require controllable PV sources in a laboratory environment. Creating PV sources with characteristics corresponding to desired environmental conditions is a challenging task. This paper presents a scheme to generate PV characteristics for any desired environmental conditions with the help of programmable power supplies using National Instrument's LabVIEW platform. The proposed system can emulate photovoltaic modules (connected in series or parallel) under different illumination levels, temperature and with different shading patterns. The emulated sources can be interfaced with power converters and enable the testing of MPPT and distributed MPPT algorithms under any desired conditions of solar radiation, temperature and other environmental factors (or their combination). Such a system can alleviate the constraints in PV research like; initial capital cost and area requirement. The proposed system provides an economical and effective method for testing and tuning the performance of MPPT/DMPPT algorithms for PV systems in a laboratory environment. All the details of this work are presented.
机译:测试,调整和验证光伏(PV)光源的最大功率点跟踪(MPPT)和分布式MPPT(DMPPT)算法需要在实验室环境中使用可控的PV光源。创建具有与所需环境条件相对应的特性的光伏电源是一项艰巨的任务。本文介绍了一种使用National Instruments的LabVIEW平台借助可编程电源在任何所需环境条件下生成PV特性的方案。所提出的系统可以在不同的照明水平,温度和不同的阴影模式下模拟光伏模块(串联或并联连接)。仿真源可以与功率转换器接口,并可以在太阳辐射,温度和其他环境因素(或其组合)的任何所需条件下测试MPPT和分布式MPPT算法。这样的系统可以减轻光伏研究中的限制,例如;初始资金成本和面积要求。所提出的系统提供了一种经济有效的方法,用于在实验室环境中测试和调整用于光伏系统的MPPT / DMPPT算法的性能。介绍了这项工作的所有细节。

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