首页> 外文期刊>Solar Energy >Determining combined effects of solar radiation and panel junction temperature on all model-parameters to forecast peak power and photovoltaic yield of solar panel under non-standard conditions
【24h】

Determining combined effects of solar radiation and panel junction temperature on all model-parameters to forecast peak power and photovoltaic yield of solar panel under non-standard conditions

机译:确定太阳辐射和面板结温对所有模型参数的综合影响,以预测非标准条件下太阳能电池板的峰值功率和光伏发电量

获取原文
获取原文并翻译 | 示例
           

摘要

In the current study, we introduce two methods to extract model-physical parameters of a solar panel using photovoltaic metrics at key points. We use a single-diode circuit to describe a solar panel working under STC. According to the first method, we derive a new transcendental equation connecting series resistance R-s to quality factor eta and photovoltaic metrics at key points. Following the second method, we establish a new analytic expression giving series resistance as a function of quality factor and key points coordinates. For both methods, we express parallel conductance G(p), photo-generation current I-ph and leakage current I-s in terms of quality factor and all photovoltaic metrics. We use quality factor as variational parameter to minimize RMSE between experimental and optimized characteristics. We borrow temperature coefficients from manufacturer data sheet and determine panel radiation coefficients to derive analytical expressions giving variations of photovoltaic metrics at key points as functions of panel junction temperature T and solar radiation S. To investigate dependencies of all model-physical parameters versus T and S, we consider numerical values of model-physical parameters at STC as initial conditions, and resolve the system of non-linear equations linking panel current to panel voltage at key points. We test numerical models established and mathematical expressions derived by specifying to PV solar panels such as KC130GT and SM55 operating at different environmental conditions of ambient temperature and solar radiation. As a result, for arbitrary environmental conditions, predicted characteristics agree with measured characteristics validating thereby our numerical approach.
机译:在当前的研究中,我们介绍了两种在关键点使用光伏度量提取太阳能电池板的模型物理参数的方法。我们使用单二极管电路来描述在STC下工作的太阳能电池板。根据第一种方法,我们导出了一个新的超越方程,该方程将串联电阻R-s与品质因数eta和光伏指标联系起来。按照第二种方法,我们建立了一个新的解析表达式,给出了作为质量因子和关键点坐标的函数的串联电阻。对于这两种方法,我们均以质量因数和所有光伏指标来表示并联电导G(p),光生电流I-ph和泄漏电流I-s。我们使用品质因数作为变异参数,以最大程度地减少实验和优化特征之间的RMSE。我们从制造商的数据表中借用温度系数,并确定面板辐射系数,以得出分析表达式,从而给出关键点处光伏度量的变化,作为面板结温T和太阳辐射S的函数。研究所有模型物理参数与T和S的相关性,我们将STC处模型物理参数的数值作为初始条件,并求解将面板电流与面板电压在关键点联系起来的非线性方程组。通过指定在不同环境温度和太阳辐射条件下工作的PV太阳能电池板(例如KC130GT和SM55),我们测试建立的数值模型和数学表达式。结果,对于任意环境条件,预测特性与测得特性一致,从而验证了我们的数值方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号