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Battery behavior prediction and battery working states analysis of a hybrid solar-wind power generation system

机译:太阳能-风力混合发电系统的电池行为预测和电池工作状态分析

摘要

Lead-acid batteries used in hybrid solar-wind power generation systems operate under very specific conditions, and it is often very difficult to predict when the energy will be extracted from or supplied to the battery. Owing to the highly variable working conditions, no battery model has achieved a good compromise between the complexity and precision. This paper presents a simple mathematical approach to simulate the lead-acid battery behaviors in stand alone hybrid solar-wind power generation systems. Several factors that affect the battery behaviors have been taken into account, such as the current rate, the charging efficiency, the self-discharge rate, as well as the battery capacity. Good agreements were found between the predicted results and the field measured data of a hybrid solar-wind project. At last, calculated from 1-year field data with the simulation model, the time-series battery state-of-charge (SOC) has been statistically analyzed considering the monthly and hourly variations as well as the probability distributions. The results have shown the battery working states in the real hybrid solar-wind power generation system.
机译:混合太阳能风力发电系统中使用的铅酸电池在非常特殊的条件下运行,通常很难预测何时从电池中提取能量或将其提供给电池。由于工作条件变化很大,因此没有一种电池模型在复杂性和精度之间取得了很好的折衷。本文提出了一种简单的数学方法来模拟独立式混合太阳能-风力发电系统中的铅酸电池行为。已经考虑了影响电池性能的几个因素,例如电流速率,充电效率,自放电速率以及电池容量。在混合太阳能-风能项目的预测结果和现场测量数据之间找到了很好的一致性。最后,利用仿真模型根据一年的现场数据进行计算,考虑了每月和每小时的变化以及概率分布,对时序电池的充电状态(SOC)进行了统计分析。结果显示了实际的混合太阳能-风能发电系统中的电池工作状态。

著录项

  • 作者

    Zhou W; Yang H; Fang Z;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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