楚雄师范学院学报 ›› 2026, Vol. 41 ›› Issue (3): 153-160.

• 新能源 • 上一篇    

光伏电站等值电路中等效电阻的影响因素分析

林泉, 陈小大   

  1. 楚雄师范学院 物理与电气能源工程学院,云南 楚雄 675000
  • 收稿日期:2026-02-09 出版日期:2026-05-20 发布日期:2026-07-22
  • 作者简介:林泉(1988-),女,讲师,研究方向为新能源并网继电保护与控制技术。
  • 基金资助:
    楚雄师范学院第三批一流课程建设项目“自动控制原理”; 楚雄师范学院第十九批教学改革研究项目; 2025年大学生创新创业训练计划(国家级)项目(No. 202511391017)

Analysis of Factors Affecting the Equivalent Resistance in the Equivalent Circuit of a Photovoltaic Power Station

Lin Quan, Chen Xiaoda   

  1. School of Physics, Electrical and Energy Engineering, Chuxiong Normal University, Chuxiong, Yunnan Province 675000, China
  • Received:2026-02-09 Online:2026-05-20 Published:2026-07-22

摘要: 本文基于光伏电池输出特性,系统分析了光照强度、温度和季节对光伏电站等效电阻的影响,以及不同容量下等效电阻的差异。在恒定光照强度1 000 W/m2下,当温度由0 ℃升至30 ℃,光伏电站的等效电阻阻值由4.67 Ω下降到3.25 Ω,表明光伏组件的等效电阻与温度呈负相关;在恒定温度25 ℃下,当光照强度由20 W/m2升至1 000 W/m2,光伏电站的等效电阻阻值由121.00 Ω急剧下降到3.98 Ω,表明光伏组件的等效电阻与光照强度也呈负相关。季节变化可影响光伏电站的等效电阻,光伏电站等效电阻阻值呈现“早晚高,午间低”的U型日变化趋势。此外,光伏电站容量越大,其等效电阻越小,并对温度、光照和季节变化的反映趋势基本一致。本文的研究结果可为光伏电站精细化建模、损耗评价和智慧运维策略的制定提供一定借鉴依据。

关键词: 等效电阻, 光照强度, 温度, 季节, 光伏电站容量

Abstract: Based on the output characteristics of photovoltaic cells, this paper systematically analyzes the effects of irradiance, temperature and season on the equivalent resistance of photovoltaic power stations as well as the differences in equivalent resistance under different capacities. At a constant irradiance of 1 000 W/m2, the equivalent resistance of the photovoltaic power station decreases from 4.67 Ω to 3.25 Ω when the temperature rises from 0℃ to 30℃, indicating that the equivalent resistance of photovoltaic modules is negatively correlated with temperature. When the irradiance increases from 20 W/m2 to 1 000 W/m2, the equivalent resistance drops sharply from 121.00 Ω to 3.98 Ω at a constant temperature of 25℃, showing that the equivalent resistance is also negatively correlated with irradiance. Seasonal variations affect the equivalent resistance of photovoltaic systems, and the daily variation of equivalent resistance presents a U-shaped trend: high in the morning and evening, low at noon. The capacity of photovoltaic power stations is likewise negatively correlated with equivalent resistance: the larger the capacity, the smaller the equivalent resistance. The response trends to temperature, irradiance and seasonal changes are basically consistent. The research results provide a reference for formulating refined modeling, loss evaluation and intelligent operation and maintenance strategies of photovoltaic power stations.

Key words: equivalent resistance, irradiance, temperature, season, capacity

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