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光伏发电技术 储能系统 ★ 5.0

特殊保护方案在能源转型中的识别与设计

Identification and Design of Special Protection Schemes for the Energy Transition

作者 Ignacio Ñancupil-Quirilao · Rigoberto Torres-Ávila · Rodrigo Palma-Behnke · Ricardo Álvarez-Malebrán · Danny Espín-Sarzosa · Marcelo Cortés
期刊 IEEE Transactions on Power Delivery
出版日期 2024年10月
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 可再生能源 电网集成 特殊保护方案 输电容量 能源转型
语言:

中文摘要

为应对气候变化,可再生能源在电力系统中的广泛应用势在必行,但其并网常受限于输电系统扩建的社会与环境制约。输电项目延迟导致阻塞加剧和可再生能源弃电,阻碍进一步整合。本文提出一种基于特殊保护方案(SPS)的新方法,利用校正控制提升输电能力,增强电网灵活性,减少对基础设施强化的依赖。所提出的SPS识别与设计方法兼顾N-1准则与可再生能源利用率,在智利互联电网的应用表明,年成本可节省高达9.64%,显著支持高效、经济的能源转型。

English Abstract

The urgent need for mitigating climate change calls for the widespread adoption of renewable energies in power systems. However, the effective integration of renewables into power grids faces challenges related to transmission system reinforcement, often hindered by social and environmental concerns. Delays in transmission projects can result in increased congestion and renewable energy curtailment, impeding further progress in renewables integration. To address these challenges, this paper presents a novel approach using Special Protection Schemes (SPS) as emerging technologies to enhance grid flexibility and reduce the need for infrastructure reinforcements. SPS, with their ability to increase transmission capacity through corrective control actions, offer innovative solutions for the system operation. A novel methodology for identifying and designing cost-effective SPS to increase the transmission capacity while maintaining the N-1 criterion and promoting renewable energy utilization is proposed. The methodology is applied to the Chilean interconnected power grid, demonstrating potential annual cost savings of up to 9.64%, achieved by reducing solar power curtailment, thereby underscoring the contribution of the proposal to support a cost-efficient energy transition.
S

SunView 深度解读

该SPS特殊保护方案技术对阳光电源储能与光伏系统深度融合具有重要价值。针对输电阻塞导致的可再生能源弃电问题,可应用于PowerTitan大型储能系统的校正控制策略设计:通过ST系列储能变流器快速响应N-1故障,实现毫秒级功率调节以提升输电断面能力。结合构网型GFM控制技术,储能系统可在故障后主动支撑电网,减少光伏弃电。该方法为iSolarCloud平台提供智能SPS识别算法,实现光储协同优化调度,在输电受限场景下最大化新能源消纳,降低系统投资成本,支撑阳光电源'光储融合'解决方案在高比例可再生能源电网中的竞争力。