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光伏发电技术 储能系统 ★ 5.0

基于GIS的近海固定式与漂浮式光伏系统技术经济比较评估:以海南为例

A GIS-based techno-economic comparative assessment of offshore fixed and floating photovoltaic systems: A case study of Hainan

作者 Ziqi He · Wanhai Xu · Yumeng Sun · Xinrui Zhang
期刊 Applied Energy
出版日期 2025年1月
卷/期 第 391 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 novel method compares offshore fixed and floating photovoltaic technologies.
语言:

中文摘要

摘要 随着太阳能光伏(PV)系统逐步向海洋扩展,亟需严谨的技术经济分析来指导不同光伏技术的投资与部署决策。目前,针对不同类型的近海光伏系统尚缺乏明确的适用区域划分。本研究通过地理信息系统(GIS)方法,对两种常见的近海光伏技术——固定式与漂浮式系统——进行了比较分析。利用所提出的GIS模型,对比了在不同海洋条件(如水深、离岸距离和风速)下两者的发电潜力、成本以及经济可行性。此外,首次绘制了每种技术适用的地理边界及其平准化度电成本(LCOE)的空间分布图。该方法应用于中国海南岛沿海水域的大规模近海光伏系统案例中。研究结果表明,在水深30米以内的近海区域部署所提出的固定式系统具有显著优势,其LCOE明显低于漂浮式系统,范围为81.2至293美元/MWh。相比之下,漂浮式系统的成本受环境条件影响较小,适用于40公里以内广阔海域的大规模部署,其LCOE范围为293至442美元/MWh。本研究提出了一种适用于浅水区域的光伏基础结构设计,并通过成本对比验证了其发展潜力,填补了当前近海光伏领域的一项关键研究空白。此外,本文还建立了固定式与漂浮式系统的综合成本模型,明确了每种技术最优运行的地理边界条件。

English Abstract

Abstract As solar photovoltaic (PV) systems are being gradually expanded into the ocean, there is an increasing need for rigorous techno-economic analysis to guide investment and deployment decisions across different PV technologies. At present, there is no clear division of locations for different offshore PV systems . This study presents a comparative analysis of two common offshore PV technologies—fixed and floating systems—through a geographic information system (GIS) approach. Using the proposed GIS model, power generation potential, costs, and economic feasibility under varying ocean conditions (e.g., water depth, offshore distance, and wind) are compared. Additionally, the geographic boundaries for each technology's applicability and the distribution of the levelized cost of energy (LCOE) are mapped for the first time. The methodology is applied to the coastal waters of Hainan Island , China, for a utility-scale offshore PV system. The research results indicate that the proposed fixed system has significant advantages when deployed at a water depth of 30 m offshore, with an LCOE significantly lower than that of floating systems, ranging from $81.2 ∼ $293/MWh. In contrast, the costs of floating systems are largely unaffected by environmental conditions, making them suitable for extensive deployment in offshore areas within 40 km with an LCOE ranging from $293 ∼ $442/MWh. This study introduces a fixed PV foundation structure designed for shallow water and validates its development potential through cost comparisons, addressing a critical gap in the offshore PV literature. Additionally, comprehensive cost models for both fixed and floating systems are presented, defining the optimal operational boundaries for each technology.
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SunView 深度解读

该研究对阳光电源海上光伏系统解决方案具有重要指导意义。针对30米内浅水固定式光伏系统(LCOE $81.2-293/MWh),SG系列1500V光伏逆变器凭借高防腐等级和宽电压范围可显著提升发电效率;对于40公里内漂浮式系统,PowerTitan储能系统可平抑海上风浪导致的功率波动。建议结合GIS模型开发海上专用逆变器拓扑结构,集成VSG虚拟同步机技术增强电网适应性,并通过iSolarCloud平台实现海上电站远程智能运维,降低LCOE并拓展海洋光伏市场。