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System memory effects in the sizing of stand-alone PV systems

机译:调整独立光伏系统大小时的系统内存影响

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摘要

Models based on daily energy balance (or long-term models) have been widely used as a tool in the stand-alone photovoltaic (PV) system sizing, mainly with the purpose of obtaining analytical expressions of the relation between the generator size and the storage capacity of the battery. The system can then be designed to meet the reliability requirements of the specific case. However, such models represent the complex operation of a stand-alone system in an oversimplified way. There is little research so far on the reliability and improvement of such models. Validation and possible modification of a long-term system model requires comparison of the simulated state of charge (SOC) of the battery with that obtained from an experimental system. In this work, experimental data from a 6-month operation of a basic stand-alone PV system have been analysed and compared with modelling results. One obvious improvement that could be applied to the long-term system model is to account for a charging efficiency of the battery, and this possibility is examined in the present work. However, comparison with the modelling results shows that the data cannot be fitted by simply taking into account battery inefficiency. A method to account for system memory effects in the increase of the battery SOC, imposed by the operation of the regulator, is necessary to accurately model the macroscopic diurnal charging/discharging process.
机译:基于每日能量平衡的模型(或长期模型)已广泛用作独立光伏(PV)系统规模确定的工具,其主要目的是获得发电机尺寸与储能之间关系的解析表达式电池容量。然后可以设计该系统以满足特定情况的可靠性要求。但是,此类模型以过于简化的方式表示了独立系统的复杂操作。迄今为止,关于这种模型的可靠性和改进的研究很少。长期系统模型的验证和可能的修改要求将电池的模拟充电状态(SOC)与从实验系统获得的模拟充电状态进行比较。在这项工作中,分析了一个基本的独立光伏系统六个月运行的实验数据,并将其与建模结果进行了比较。可以应用于长期系统模型的一个明显改进是考虑了电池的充电效率,并且在当前工作中研究了这种可能性。但是,与建模结果的比较表明,仅考虑电池效率低下就无法拟合数据。为了准确地对宏观的昼夜充电/放电过程进行建模,需要一种方法来解决由调节器的操作所引起的电池SOC增大所带来的系统存储效应。

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