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Solar PV Battery Based System for Telecom Tower Application

机译:基于太阳能光伏电池的电信塔应用系统

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The telecom tower depends upon the diesel generator as backup power to meet its load demand. This work presents the control of the solar PV battery system to reduce the dependability of the telecom sector on the DG set. This solar PV-battery system is used as backup power to meet the load demand when the supply from the AC utility is not available as it works in both grid connected (GC) and standalone (SA) mode. The system operates smoothly when it’s working mode is shifted from GC to SA and vice versa. It also improves the voltage profile at the point of common coupling (PCC) and utility current profile by mitigating the power quality problems caused by the nonlinear loads used in a telecom tower. An adaptive algorithm is presented to control the system in GC mode and a proportional resonant (PR) controller-based control algorithm is used in SA mode. The battery bank provides the support to the load in the SA mode when the solar PV generation is not sufficient, and it charges as soon as the utility supply reappears so that it has enough energy to supply power to the load in the SA mode. The system performance and the control algorithm have effectiveness validated through both simulation and experiment results.
机译:电信塔依靠柴油发电机作为备用电源来满足其负载需求。这项工作提出了对太阳能光伏电池系统的控制,以降低DG机组中电信部门的可靠性。当无法从AC公用事业公司获得电源时,此太阳能光伏电池系统可用作备用电源,以满足负载需求,因为它既可在并网(GC)模式下工作,也可在独立(SA)模式下工作。当工作模式从GC转换为SA时,系统可以平稳运行,反之亦然。它还通过减轻电信塔中使用的非线性负载引起的电能质量问题,改善了公共耦合点(PCC)处的电压曲线和公用事业电流曲线。提出了一种自适应算法来在GC模式下控制系统,在SA模式下使用基于比例共振(PR)控制器的控制算法。当太阳能光伏发电不足时,电池组将为SA模式下的负载提供支持,并在公用电源重新出现后立即充电,以使其有足够的能量为SA模式下的负载供电。通过仿真和实验结果验证了系统性能和控制算法的有效性。

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