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风电变流技术 储能系统 可靠性分析 ★ 5.0

大型深海海上风电场规划与可靠性研究进展:综述

Recent Advancements in Planning and Reliability Aspects of Large-Scale Deep Sea Offshore Wind Power Plants: A Review

作者 Pawan Kumar · Santanu Paul · Akshay Kumar Saha · Omkar Yadav
期刊 IEEE Access
出版日期 2025年1月
技术分类 风电变流技术
技术标签 储能系统 可靠性分析
相关度评分 ★★★★★ 5.0 / 5.0
关键词 海上风电场 规划与可靠性 技术创新 并网 可持续发展
语言:

中文摘要

向可再生能源的转型推动了海上风电的快速发展,大型深海风电场成为满足能源需求和应对气候变化的重要途径。本文综述了大型深海风电场在规划与可靠性方面的最新进展,涵盖选址与资源评估、风机与基础技术创新、风险管控、电网接入及社会环境影响等关键领域。通过整合现有研究成果与行业实践,系统评述了当前开发与运营中的先进方法与策略,揭示了未来研究方向与政策启示,为全球海上风电可持续发展提供学术参考。

English Abstract

The transition towards renewable energy sources has propelled the rapid expansion of offshore wind power, with large-scale deep offshore wind power plants (OWPPs) emerging as a promising solution to meet escalating energy demands while mitigating climate change. This comprehensive review delves into recent advancements in the planning and reliability aspects of large-scale deep offshore wind power plants, crucial determinants of project success, economic viability, and long-term sustainability. The review synthesizes current research findings, technological innovations, and industry practices, and the evaluation elucidates state-of-the-art methodologies, tools, and strategies employed in developing and operating these offshore renewable energy assets. Key focus areas include site selection and resource assessment, technological innovations in turbine design and foundation systems, risk assessment and mitigation strategies, grid integration, and socio-economic and environmental considerations. The review identifies emerging trends, future research directions, and policy implications by critically analyzing these dimensions, offering valuable insights for researchers, practitioners, policymakers, and investors engaged in global sustainable offshore wind energy deployment.
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SunView 深度解读

该研究对阳光电源海上风电变流器及储能系统的技术创新具有重要参考价值。研究中的深海风电场可靠性分析可直接应用于我司SG系列风电变流器的防腐、防潮等设计优化,并为PowerTitan储能系统在海上风电配套应用提供技术支撑。特别是在电网接入方面,文中的先进控制策略可用于完善我司构网型(GFM)控制算法,提升风储联合系统的并网稳定性。建议重点关注风电场规划与风险管控经验,用于指导iSolarCloud平台的预测性维护功能开发,提升海上风电场的智能运维水平。这些技术创新将显著增强阳光电源在海上风电领域的竞争优势。