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Evaluation of PV Generator Performance and Energy Supplied Fraction of the 120 kWp PV Microgrid System in Thailand

机译:泰国120 kWp光伏微电网系统的光伏发电机性能和能量供应分数的评价

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Normally, the main generators of microgrid system use controllable energy resources such as fossil foel, biomass, biogas, hydro, etc for uncomplicated control. However, it is very challenging to control the microgrid system that uses uncontrollable energy resources such as solar and wind for main generators of microgrid system because they have many advantages. From this point, the PV microgrid system is constructed and operated at School of Renewable Energy Technology (SERT), Naresuan University for research and development of the microgrid system that is supplying 50% of total electricity demand by PV main generator. By measuring the important parameters such as solar irradiance, PV array voltage, PV array current, and AC electrical power, these data were collected for a year from November 2008 to October 2009 to use in evaluation processes. The PV generator evaluation result is revealed that the average reference yield (Y_r), array yield (Y_A), and final yield (Y_f) are 5.21, 4.32, and 3.84 kWh/kW_p day respectively. The average total loss of the PV generator is 26.27 % that comes from summing up the average capture losses (L_c) 17.21 % and average system losses (L_S) 9.06 %. The average overall PV plant efficiency (η _(not)) is 10.41 %, and the average performance ratio (PR) is 73.45 %. While considering the system efficiency of the PV generator at various solar irradiance, we found that it has the lowest efficiency when the solar irradiance is in the range 0-0.10 kW/m~2, its efficiency increases with the increasing in the solar irradiance from 0.10 to 0.35 kW/m , the efficiency becomes highest when the solar irradiance in the range of 0.35 to 0.65 kW/m~2, and its efficiency decreases slowly when the solar irradiance is in the range of 0.65 to 1.30 kW/m~2. For energy supplied fraction of the microgrid, it can achieve the PV generator producing target by PV generator and external grid supplying 73% and 27% of the total load of the microgrid.
机译:通常情况下,微电网的系统使用的可控能源资源的主要发电机等化石Foel的工作,生物质能,沼气,水电等进行简单的控制。然而,这是非常具有挑战性的控制,使用不可控的能源资源,如太阳能和风能的微电网系统的主发电机,因为他们有很多优势的微电网系统。从这一点来说,光伏微电网系统的构建,并在可再生能源技术(SERT),纳瑞宣大学学院的工作是提供由PV主发电机总电力需求的50%的微电网系统的研究和开发。通过测量重要参数,如太阳辐射,光伏阵列电压,PV阵列电流,以及AC电源,收集这些数据进行了一年,从2008年11月至2009年10月在评估过程中使用。 PV发电机评价结果表明,平均参考产率(Y_r),阵列产率(Y_A),和最终产率(Y_f)分别为5.21,4.32,和3.84千瓦时/ kW_p天。光伏发电机的平均总损耗是来自总结平均捕获损失(L_c)17.21%,平均系统损耗(L_S)9.06%26.27%。平均整体光伏电厂效率(η_(未))为10.41%,平均性能比(PR)是73.45%。同时考虑在不同的太阳辐射的光伏发电机的系统效率,我们发现它具有最低的效率,当太阳辐射范围为0-0.10千瓦/米〜2,其与来自于太阳辐射的增加的效率提高0.10到0.35千瓦/米,效率变得最高时的太阳辐照度在0.35至0.65千瓦/米〜2,并且当太阳辐射是在0.65至1.30千瓦/米〜2其效率缓慢减小。用于微电网的供给能量部分,它可以实现由光伏发电机和外部电网提供73%和微电网的总负荷的27%的PV发生器产生目标。

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