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一种用于功率平滑和脉冲负载调节的并网光伏-混合储能微电网的新型弹性控制策略

A Novel Resilient Control of Grid-Integrated Solar PV-Hybrid Energy Storage Microgrid for Power Smoothing and Pulse Power Load Accommodation

语言:

中文摘要

针对光伏接入带来的电网波动及脉冲负载冲击问题,本文提出了一种包含氢/溴氧化还原液流电池(RFB)和超级电容器(SC)的混合储能系统(HESS)。该系统通过协同控制策略,有效平抑了光伏功率波动并提升了微电网在应对脉冲负载时的弹性与稳定性。

English Abstract

Solar photovoltaics (PVs) are increasingly penetrating remote are a power systems. However, the adverse effect of pulse power loads and fluctuating PV power brings severe grid instability. Therefore, an effort is made to propose a hybrid energy storage system (HESS) that encompasses hydrogen/bromine redox flow battery (RFB) and supercapacitor (SC) for grid-integrated PV systems to facilitate high ...
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SunView 深度解读

该研究涉及的混合储能技术(HESS)与阳光电源PowerTitan及PowerStack系列储能系统高度契合。通过引入超级电容器与液流电池的组合,可进一步优化阳光电源在微电网及弱电网环境下的功率响应速度。对于PowerTitan系列,该控制策略可提升系统在面对工业脉冲负载时的瞬态支撑能力,减少电池组的频繁充放电压力,延长系统寿命。建议研发团队关注该弹性控制算法,将其集成至iSolarCloud智能运维平台,以提升储能系统在复杂工况下的调频与平滑输出性能,增强产品在微电网市场的竞争力。