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Dependence of electric power flow on solar radiation power in compact photovoltaic system containing SiC-based inverter with spherical Si solar cells

机译:包含球形硅太阳能电池的SiC逆变器的紧凑型光伏系统中电流对太阳辐射功率的依赖性

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摘要

A photovoltaic power generation system suitable for mobile applications was developed. A SiC integrated converter with the maximum power point tracking circuit provided the smallest photovoltaic inverter in ~200 W level. The SiC-based inverter exhibited a peak direct current (DC)-alternating current (AC) conversion efficiency higher than that of conventional Si inverters. A Li-ion laminated battery was mounted in the same housing as the inverter. The weight of entire system containing spherical Si solar cell panels was well below 6 kg. Continuous operation measurements of this system were carried out using four solar cell modules connected in parallel under irradiation by natural sunlight. The total inverter efficiencies under realistic operation conditions were slightly decreased compared with the DC-AC converter values because of loss by the maximum power point tracking device. Even under unstable weather conditions, the system provided power stability without ripples. The behaviors of the output powers of the solar cell, storage battery, and inverter modules were analyzed as a function of the solar radiation power density. The substantial efficiencies of the solar cell modules were dependent on the weather conditions and were approximately 10% on cloudy days. The present compact photovoltaic power generation system with SiC device and spherical Si solar cells is viable for sub kW-class inverter.
机译:开发了适合于移动应用的光伏发电系统。具有最大功率点跟踪电路的SiC集成转换器提供了〜200 W级别的最小光伏逆变器。 SiC基逆变器的峰值直流(DC)交流电(AC)转换效率高于常规Si逆变器。将锂离子层压电池安装在与逆变器相同的外壳中。包含球形硅太阳能电池板的整个系统的重量远低于6千克。使用四个在自然阳光照射下并联连接的太阳能电池模块进行该系统的连续运行测量。由于最大功率点跟踪设备的损耗,实际操作条件下的逆变器总效率与DC-AC转换器值相比略有下降。即使在不稳定的天气条件下,该系统也能提供稳定的电源,不会产生波动。根据太阳能辐射功率密度分析了太阳能电池,蓄电池和逆变器模块的输出功率行为。太阳能电池模块的实际效率取决于天气状况,在阴天时约为10%。具有SiC器件和球形Si太阳能电池的当前紧凑型光伏发电系统对于亚kW级逆变器是可行的。

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