In India most part receives 4 - 7 kWh of solar radiation per square meter per day with 200 - 250 sunny days in a year. Tamilnadu state also receives the highest annual radiation in India. In this paper, the grid conne...In India most part receives 4 - 7 kWh of solar radiation per square meter per day with 200 - 250 sunny days in a year. Tamilnadu state also receives the highest annual radiation in India. In this paper, the grid connected photovoltaic plant has a peak power of 80 KWp supplies electricity requirement of GRT IET campus during day time (7 hrs) and reduces load demand and generates useful data for future implementation of such PV plant projects in the Tamilnadu region. Photovoltaic plant was installed in April 2015, monitored during 6 months, and the performance ratio and the various power losses (power electronics, temperature, soiling, internal, network, grid availability and interconnection) were calculated. The PV plant supplied 64,182.86 KWh to the grid from April to September 2015, ranging from 11,510.900 to 10,200.9 kWh. The final yield ranged from 143.886 (h/d) to 127.51 (y/d), reference yield ranged from 201.6 (h/d) to 155.31 (h/d) and performance ratio ranged from 71.3% to 82.1%, for a duration of six months, it had given a performance ratio of 83.82%, system efficiency was 4.16% and the capacity factor of GRT IET Campus for six months was 18.26%. Payback period in years = 9 years 4 months, energy saving per year = 204,400 KWh, cost reduction per year = 1,737,400, Indian rupee = 26,197.30 USD and total CO<sub>2</sub> reductions per year = 102,200 tons CO<sub>2</sub>/year.展开更多
基于两级式光伏并网逆变器分时复合控制原理,提出一种带有最大功率点跟踪(maximum power point tracking,MPPT)算法的改进控制方案,并采用数字陷波器抑制光伏测二次电压脉动,为MPPT提供稳定的电压参考,同时给出输入侧解耦电容计算方法...基于两级式光伏并网逆变器分时复合控制原理,提出一种带有最大功率点跟踪(maximum power point tracking,MPPT)算法的改进控制方案,并采用数字陷波器抑制光伏测二次电压脉动,为MPPT提供稳定的电压参考,同时给出输入侧解耦电容计算方法。在此基础上,采用损耗分析的方法,详细对比了改进型分时复合控制策略及传统控制策略下的系统损耗。最后搭建了两台实验样机进行实验验证,实验结果表明,所提出的改进分时复合控制策略的可行性,并得出分时复合策略较传统控制策略的优缺点。展开更多
文摘In India most part receives 4 - 7 kWh of solar radiation per square meter per day with 200 - 250 sunny days in a year. Tamilnadu state also receives the highest annual radiation in India. In this paper, the grid connected photovoltaic plant has a peak power of 80 KWp supplies electricity requirement of GRT IET campus during day time (7 hrs) and reduces load demand and generates useful data for future implementation of such PV plant projects in the Tamilnadu region. Photovoltaic plant was installed in April 2015, monitored during 6 months, and the performance ratio and the various power losses (power electronics, temperature, soiling, internal, network, grid availability and interconnection) were calculated. The PV plant supplied 64,182.86 KWh to the grid from April to September 2015, ranging from 11,510.900 to 10,200.9 kWh. The final yield ranged from 143.886 (h/d) to 127.51 (y/d), reference yield ranged from 201.6 (h/d) to 155.31 (h/d) and performance ratio ranged from 71.3% to 82.1%, for a duration of six months, it had given a performance ratio of 83.82%, system efficiency was 4.16% and the capacity factor of GRT IET Campus for six months was 18.26%. Payback period in years = 9 years 4 months, energy saving per year = 204,400 KWh, cost reduction per year = 1,737,400, Indian rupee = 26,197.30 USD and total CO<sub>2</sub> reductions per year = 102,200 tons CO<sub>2</sub>/year.
文摘基于两级式光伏并网逆变器分时复合控制原理,提出一种带有最大功率点跟踪(maximum power point tracking,MPPT)算法的改进控制方案,并采用数字陷波器抑制光伏测二次电压脉动,为MPPT提供稳定的电压参考,同时给出输入侧解耦电容计算方法。在此基础上,采用损耗分析的方法,详细对比了改进型分时复合控制策略及传统控制策略下的系统损耗。最后搭建了两台实验样机进行实验验证,实验结果表明,所提出的改进分时复合控制策略的可行性,并得出分时复合策略较传统控制策略的优缺点。