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Combination of Modified P&O with Power Management Circuit to Exploit Reliable Power from Autonomous PV-Battery Systems

机译:改进的P&O与电源管理电路的组合利用自主PV电池系统的可靠电源

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摘要

Energy demand and conservation are two main concerns in distributed generation systems. Recently, lighting loads play a crucial role in these concerns. Nowadays, DC-fed LED lighting provides better solution. The conventional grid needs rectifier to provide DC results at high cost with low efficiency. Hence, a reliable autonomous PV-battery (APVB) system-fed LED load employing power management circuit (PMC) with maximum power point tracking (MPPT) has been presented to overcome these concerns. The undesirable oscillations at MPP associated with conventional perturb and observe algorithm are highly reduced by implementing variable step size-modified P&O algorithm. PMC includes non-isolated bidirectional converter as a charge controller which determines the battery charging and discharging mode depending upon state of charge, solar/converter output power and battery power with regulated DC bus voltage of 36 V. Performance has been analyzed with three MPPT and PMC through simulation. Moreover, to validate the effectiveness of the proposed approach, incremental conductance control is also employed and compared with results. In addition, the same was also tested with experimental setup by using developed prototype model with DSPIC30F2010 controller. Experimental results illustrate that the proposed system yields desired output voltage with superior performance via simplified control algorithm. Results proven that APVB provides stable and balanced power for any desired loads.
机译:能源需求和保护是分布式发电系统中的两个主要问题。最近,照明负荷在这些问题中发挥着至关重要的作用。如今,DC馈线LED照明提供更好的解决方案。传统的网格需要整流器以低效率为直流提供直流结果。因此,已经介绍了采用具有最大功率点跟踪(MPPT)的可靠的自主PV电池(APVB)系统馈电LED负载以克服这些问题。通过实现可变步长改性的P&O算法,高度降低了与传统扰动和观察算法相关的MPP的不希望的振荡。 PMC包括非隔离的双向转换器作为充电控制器,该电荷控制器根据充电状态确定电池充电和放电模式,太阳能/转换器输出功率和电池功率,具有36V的调节直流母线电压。的性能已经用三个MPPT分析了PMC通过模拟。此外,为了验证所提出的方法的有效性,还采用增量电导控制并与结果进行比较。此外,还通过使用具有DSPIC30F2010控制器的开发的原型模型,使用实验设置测试了相同的。实验结果说明所提出的系统通过简化的控制算法产生具有优异性能的所需输出电压。结果证明,APVB为任何所需负载提供稳定和平衡的电源。

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