In order to review storage performance of the electric double layer capacitor (EDLC) in microgrid applications, charging time and storage efficiency issues are mainly studied aiming at three different charging modes, including the constant voltage charging mode (CVCM), the constant current charging mode (CCCM) and the constant power charging mode (CPCM), based on the practical EDLC product. Numerical calculation methods are presented for different charging modes, and the charging efficiency is also reviewed with strict mathematical deductions, which is validated to be accurate enough and applicable through a simple case with the PV/EDLC system illustration. Finally, trade-off problems between charging time and energy loss are also studied. Research results show that the CPCM is more suitable for microgrid networks compared with the traditional constant-voltage and constant-current charging modes. The hybrid charging method is recommended to save energy and keep high efficiency relatively at the same time. However, how to manage the combination percentage of different charging modes in a reasonable way should be dealt with according to the practical requirements.
为避免功率失配损失,太阳能模组一般都配置旁路二极管,提供一个能量散逸的途径。基于这种配置提出一种新的太阳能模组性能评估算法。依据实际旁路区段配置建立网络方程,通过牛顿-拉夫逊非线性迭代方法实现拓扑求解,继而获得模组的整体性能。在用制造商标准测试数据验证了该评估算法的有效性后,进一步考察各种阴影场景下的模组整体性能,并给出全局最大功率点(maximal power point,MPP)位置随辐射强度变化时的定性结论。理论分析和仿真结果表明,由于多辐射强度导致功率多峰值的存在,常规最大功率点跟踪(maximal power point track,MPPT)算法可能会因为只能检测到MPPT伪极大值点而失效;而且,旁路二极管的合理配置对太阳能模组性能有很大影响。