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光伏发电技术 储能系统 ★ 5.0

基于阴影适应性的铁路廊道沿线条带式光伏阵列布置优化

Arrangement optimization based on shadow adaptation for strip PV arrays along electrified railways corridors

作者 Fangyi Wei · Yan Li · Yaqing Fan
期刊 Energy Conversion and Management
出版日期 2025年1月
卷/期 第 336 卷
技术分类 光伏发电技术
技术标签 储能系统
相关度评分 ★★★★★ 5.0 / 5.0
关键词 A general output characteristic model for Strip PV arrays is proposed.
语言:

中文摘要

摘要 在铁路廊道沿线路堤边坡表面布置光伏(PV)模块,可有效利用廊道沿线闲置土地获取太阳能,对推动铁路系统的绿色低碳发展具有重要意义。由于铁路廊道长度长、跨度大,光伏模块通常以条带式光伏(SPV)阵列的线性布局形式进行安装。此外,长距离铁路廊道沿线复杂的气候与光照条件导致SPV阵列存在显著的失配损失。这些在传统光伏电站中不存在的独特挑战,使得传统的光伏阵列连接方式和优化方法难以适用于SPV阵列。为此,本研究提出了一种通用的任意光伏阵列输出特性建模方法,并引入一种新参数——阴影适应性,用于量化光伏阵列在不同遮挡条件下的适应能力。基于SPV阵列的两个关键优化目标——阴影适应性和总电缆长度,本文首次提出了一种针对SPV阵列的布局优化算法,即阴影适应性遗传算法(SAGA),该算法采用遗传算法优化SPV阵列的布设方式。仿真结果表明,在多种典型遮阴条件下,相较于传统的全交叉连接配置,采用SAGA优化后的SPV阵列布局最大可使输出功率提高17.08%,阴影适应性提升4.30%。

English Abstract

Abstract Arranging photovoltaic (PV) modules on the surface of embankment slopes along railway corridors can effectively harness PV energy from idle land along the corridor, which is crucial for promoting the green and low-carbon development of railways. Owing to the vast length and wide span of railway corridors, PV modules are typically arranged as strip photovoltaic (SPV) arrays in a linear layout. Furthermore, the complex climatic and sunlight conditions along long-distance railway corridors result in significant SPV mismatch losses. These unique challenges, which are absent in conventional PV power stations, render conventional array connections and optimization methods unsuitable for SPV arrays. Hence, this study proposes a general approach for modeling the output characteristics of arbitrary PV arrays as well as a new parameter, i.e., shadow adaptation, to quantify the adaptability of PV arrays under different shading conditions. Based on two key optimization objectives for SPV arrays — shadow adaptability and total cable length — this study proposes, for the first time, a layout optimization algorithm for SPV arrays, i.e., the shadow adaptation genetic algorithm (SAGA), which employs a genetic approach to optimize the SPV array arrangement. Simulation results show that an SPV array layout optimized by the SAGA achieves a maximum increase in output power by 17.08% and a 4.30% improvement in shadow adaptation compared with the conventional total-cross-tied configuration under various typical shading conditions.
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SunView 深度解读

该铁路沿线带状光伏阵列优化技术对阳光电源SG系列逆变器及iSolarCloud平台具有重要应用价值。研究提出的阴影适应性参数与SAGA优化算法,可直接应用于我司多路MPPT技术优化,在复杂遮挡场景下提升发电量达17%。特别适配铁路光储充一体化场景:结合ST系列储能PCS应对列车负荷波动,通过iSolarCloud平台实现带状阵列的智能重构与预测性维护。该场景可拓展至高速公路边坡等线性分布式光伏系统,为阳光电源开拓交通能源新市场提供技术支撑。