The Performance and Robustness of Power Protection Schemes for Grid-Connected PV Systems Under Varied Smart Inverter Controllers

IF 4.3 3区 工程技术 Q2 ENERGY & FUELS
Feras Alasali, Naser El-Naily, Hassen Loukil, Emad El Deen Omran, William Holderbaum, Abdelsalam Elhaffar, Abdelaziz Salah Saidi
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Abstract

The increasing use of inverter-based distributed generation requires a comprehensive study of its effects on fault analysis and the effectiveness of protection systems in distribution networks. This study examines the impact of different inverter control modes on multiple types of protective relay schemes. These include different overcurrent relay (OCR) schemes, both standard and nonstandard tripping characteristics, optimal coordination approaches, and different grid operation scenarios. The investigation is conducted through the utilization of grid-connected and islanding operation modes, with fault resistance values of 0 and 5 Ω. The study is carried out on a 14-bus CIGRE network which includes two photovoltaic (PV) farms with a capacity of 10 MVA each. The research provides several significant contributions, including the analysis of fault current contributions, examination of issues in OCR protection, investigation of the influence of fault impedance levels on OCR performance, evaluation of ideal coordination methods, and carrying out a comparative analysis utilizing optimization technique by using the water cycle optimization algorithm (WCA) and the particle swarm optimization algorithm (PSO). In addition, to guarantee the robustness of the suggested protection strategy, this work adopts a hardware-in-the-loop approach. The OMICRON-256 system is utilized to carry out real-time testing on a SIPROTEC 7SJ62 multifunction protection relay, which validates the effectiveness of the proposed method in protecting microgrids under different PV control strategies. The total operating time for the nonstandard tripping scheme was 12.077–12.3003 s for PSO and WCA, respectively, while for the standard tripping scheme, it was 12.1226 and 12.1564 s. Moreover, these findings offer practical insights that can assist operators in effectively designing the power networks with grid-connected PV systems by showing OCR miscoordination and no tripping events in power systems with PVs under inverters controllers.

Abstract Image

不同智能逆变器控制器下并网光伏系统的功率保护方案的性能和鲁棒性
随着基于逆变器的分布式发电的使用日益增多,需要全面研究其对配电网络故障分析和保护系统有效性的影响。本研究探讨了不同逆变器控制模式对多种继电保护方案的影响。其中包括不同的过流继电器 (OCR) 方案、标准和非标准跳闸特性、优化协调方法以及不同的电网运行场景。研究采用了并网和孤岛运行模式,故障电阻值分别为 0 和 5 Ω。研究是在一个 14 总线的 CIGRE 电网上进行的,该电网包括两个光伏 (PV) 电场,每个电场的容量为 10 MVA。该研究做出了多项重大贡献,包括分析故障电流贡献、检查 OCR 保护中的问题、调查故障阻抗水平对 OCR 性能的影响、评估理想协调方法,以及利用水循环优化算法 (WCA) 和粒子群优化算法 (PSO) 等优化技术进行比较分析。此外,为了保证所建议的保护策略的鲁棒性,这项工作采用了硬件在环的方法。利用 OMICRON-256 系统对 SIPROTEC 7SJ62 多功能继电保护装置进行了实时测试,验证了所提方法在不同光伏控制策略下保护微电网的有效性。在非标准跳闸方案中,PSO 和 WCA 的总运行时间分别为 12.077-12.3003 s,而在标准跳闸方案中,总运行时间分别为 12.1226 和 12.1564 s。此外,这些研究结果通过显示逆变器控制器下光伏发电系统的 OCR 不协调和无跳闸事件,为运营商有效设计光伏发电系统并网电网提供了实用见解。
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来源期刊
International Journal of Energy Research
International Journal of Energy Research 工程技术-核科学技术
CiteScore
9.80
自引率
8.70%
发文量
1170
审稿时长
3.1 months
期刊介绍: The International Journal of Energy Research (IJER) is dedicated to providing a multidisciplinary, unique platform for researchers, scientists, engineers, technology developers, planners, and policy makers to present their research results and findings in a compelling manner on novel energy systems and applications. IJER covers the entire spectrum of energy from production to conversion, conservation, management, systems, technologies, etc. We encourage papers submissions aiming at better efficiency, cost improvements, more effective resource use, improved design and analysis, reduced environmental impact, and hence leading to better sustainability. IJER is concerned with the development and exploitation of both advanced traditional and new energy sources, systems, technologies and applications. Interdisciplinary subjects in the area of novel energy systems and applications are also encouraged. High-quality research papers are solicited in, but are not limited to, the following areas with innovative and novel contents: -Biofuels and alternatives -Carbon capturing and storage technologies -Clean coal technologies -Energy conversion, conservation and management -Energy storage -Energy systems -Hybrid/combined/integrated energy systems for multi-generation -Hydrogen energy and fuel cells -Hydrogen production technologies -Micro- and nano-energy systems and technologies -Nuclear energy -Renewable energies (e.g. geothermal, solar, wind, hydro, tidal, wave, biomass) -Smart energy system
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