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MINIMISATION OF POWER LOSS FROM PARTIALLY SHADED SOLAR CELL ARRAYS

机译:最小化部分阴影太阳能电池阵列的功耗损失

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In conventional wiring schemes the output from a partially shaded solar cell array drops rapidly to that of the fully shaded array even when only a small fraction is shaded. In this paper circuit simulation has been used to show that by dynamically reconfiguring the array, the power losses due to shading can be significantly reduced. Reconfiguration is achieved by using switching microcircuits with on-chip photo detectors to determine which parts of the array are in shade. The currents from the shaded and unshaded sections of the array are separated and then connected in parallel to a maximum power point tracker. It is shown that by using this reconfiguration that the power output from a partially shaded array can be increased by at least 100% compared with that from a conventional series connected array over a range of shading conditions.
机译:在传统的布线方案中,即使只有一小部分被遮蔽,部分遮蔽的太阳能电池阵列的输出也会迅速下降到完全遮蔽的阵列的输出。在本文中,电路仿真已显示出通过动态重新配置阵列,可以显着降低由于遮蔽而产生的功率损耗。通过使用带有片上光电检测器的开关微电路来确定阵列的哪些部分处于阴影中,可以实现重新配置。来自阵列阴影部分和未阴影部分的电流被分离,然后并联到最大功率点跟踪器。示出了通过使用这种重新配置,与部分串联阴影阵列的功率输出相比,在一定范围的阴影条件下,与传统的串联阵列的功率输出相比,可以至少增加100%。

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