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Assessing MPPT Techniques on Hot-Spotted and Partially Shaded Photovoltaic Modules: Comprehensive Review Based on Experimental Data

机译:评估热点和部分遮光的光伏组件上的MPPT技术:基于实验数据的综合评述

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摘要

Hot-spotting is a reliability problem influencing photovoltaic (PV) modules, where a mismatched solar cell/cells heat up significantly and reduce the output power of the affected PV module. Therefore, in this paper, a succinct comparison of seven different state-of-the-art maximum power point tracking (MPPT) techniques are demonstrated, doing useful comparisons with respect to amount of power extracted, and hence calculate their tracking accuracy. The MPPT techniques have been embedded into a commercial off-the-shelf MPPT unit, accordingly running different experiments on multiple hot-spotted PV modules. Furthermore, the comparison includes real-time long-term data measurements over several days and months of validation. Evidently, it was found that both fast changing MPPT and the modified beta techniques are best to use with PV modules affected by hot-spotted solar cells as well as during partial shading conditions, on average, their tracking accuracy ranging from 92% to 94%. Ultimately, the minimum tracking accuracy is below 93% obtained for direct pulsewwidth modulation voltage controller MPPT technique.
机译:热斑是影响光伏(PV)模块的可靠性问题,其中不匹配的一个或多个太阳能电池会明显发热,并降低受影响的PV模块的输出功率。因此,在本文中,我们对7种不同的最新最大功率点跟踪(MPPT)技术进行了简要比较,并对提取的功率量进行了有用的比较,从而计算出它们的跟踪精度。 MPPT技术已被嵌入到现成的商用MPPT单元中,因此在多个热点PV模块上进行了不同的实验。此外,比较还包括经过几天和几个月验证的实时长期数据测量。显然,发现快速变化的MPPT和改进的beta技术均最适合与受热点太阳能电池影响的PV组件以及在部分遮光条件下使用,平均而言,其跟踪精度范围为92%至94% 。最终,直接脉冲宽度调制电压控制器MPPT技术获得的最小跟踪精度低于93%。

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