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光伏发电技术
★ 5.0
光伏发电、电动汽车和热泵对配电网的影响——综述
Grid impact of photovoltaics, electric vehicles and heat pumps on distribution grids — An overview
| 作者 | Nikolaos Damianaki · Gautham Ram Chandra Mouli · Pavol Bauer |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 380 卷 |
| 技术分类 | 光伏发电技术 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Rural grids: Most vulnerable to voltage deviations and unbalance due to long distribution lines. |
语言:
中文摘要
摘要 分布式发电(如光伏发电,PVs)以及采用热泵(HPs)和电动汽车(EVs)实现供暖和交通领域的电气化将在能源转型中发挥重要作用。然而,这些低碳技术(LCTs)的应用并非没有副作用,可能引发电压越限、功率损耗增加、元件过载、能耗升高、功率峰值以及电能质量问题(如谐波和三相不平衡等)。本文对这三种低碳技术并网后可能引发的各类电网影响问题的重要研究成果进行了系统的回顾分析与总结。研究还涵盖了多种研究特征,包括电网拓扑结构、季节变化、不同低碳技术组合下的同时运行情况、渗透率水平等。此外,本文还对最受关注的电网问题的影响程度进行了定性分析,并对不同类型电网及不同低碳技术之间进行了定量比较。研究表明,光伏发电与电动汽车(PVs-EVs)以及光伏发电与热泵(PVs-HPs)的联合接入可在无需额外解决方案的情况下产生相互缓解效应。此外,电压偏差和不平衡问题对农村电网影响更为显著,而元件过载则对郊区电网构成更大风险。最后,文中提出的缓解措施(如储能系统、智能充电等)均与其所针对的具体电网影响问题进行了对应关联。
English Abstract
Abstract Distributed generation, such as photovoltaics (PVs), and electrification of heating and transportation with heat pumps (HPs) and electric vehicles (EVs) will play a major role in the energy transition. However, these low-carbon technologies (LCTs) do not come without side effects such as voltage violations, power loss increase, component overloading, higher energy consumption, power peaks, and power quality issues, e.g., harmonics and phase unbalance. This work constitutes a review analysis and summary of all the important findings concerning the various grid impact issues that can appear due to the grid integration of these 3 LCTs. The work also encapsulates various research characteristics such as grid topology, seasons, simultaneous operation under various LCT combinations, penetration levels, etc. Moreover, it incorporates a qualitative analysis of the impact level of the most investigated grid issues and quantitative comparisons between the different grid types and LCTs. It has been shown that the combined integration of PVs-EVs and PVs-HPs can result in mitigation effects without extra solutions. Moreover, voltage deviations and unbalance affect more the rural grids while component overloading is more hazardous for suburban grids. Finally, proposed mitigation solutions, such as energy storage, smart charging, etc., are correlated with their respective grid impact issues.
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SunView 深度解读
该研究揭示的光伏-储能-充电桩协同效应对阳光电源具有重要战略价值。文中指出PV-EV和PV-HP组合可自然缓解电网冲击,验证了我司ST系列储能变流器与SG逆变器协同控制的技术路线。针对电压越限、不平衡和过载问题,可通过PowerTitan储能系统的GFM控制模式提供电压支撑,结合充电桩智能调度算法削峰填谷。iSolarCloud平台可集成多场景LCT数据,实现预测性维护和动态功率优化,为农村及郊区配电网提供差异化解决方案,强化光储充一体化系统竞争力。