考虑运行状态与拓扑结构的RIES脆弱支路辨识
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新疆大学电气工程学院 乌鲁木齐 830017

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TM721;TN711

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国家自然科学基金(52266018)、新疆维吾尔自治区重点研发项目(2022B01016-1)资助


Identification of vulnerable branches in RIES considering operating states and topological structure
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College of Electric Engineering, Xinjiang University,Urumqi 830017, China

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    摘要:

    脆弱支路故障可能导致区域综合能源系统的稳定性下降,甚至引发系统大范围失稳。因此识别系统的脆弱支路成为保证系统安全稳定运行和预防的重要环节。为此提出一种电-气-热区域综合能源系统脆弱支路识别方法。首先基于统一能路理论对电-气-热网络进行统一能路能流建模和计算,获取网络的初始运行状态,同时针对区域综合能源系统建立预想事故集,考虑热网与电网N-1事故对网络内部的影响,通过N-1求得故障后支路的运行状态;其次基于能流变化熵的运行特性以及局部集中度的结构特性脆弱性分析,提出支路的综合脆弱度指标,通过粒子群优化算法确定运行脆弱度和结构脆弱度权重,确保评估过程的客观性与准确性,根据脆弱度指标进行排序从而识别出系统的脆弱支路,最后采用电IEEE14节点-气14节点-热14节点算例辨识系统脆弱支路,实验结果表明所提出的方法能够合理反映系统实际情况,粒子群优化算法所确定的权重能够更好地识别脆弱支路,提升了识别的准确性和可靠性。

    Abstract:

    Failures in vulnerable branches can lead to a decline in the stability of regional integrated energy systems and even trigger large-scale system instability. Therefore, identifying the vulnerable branches of the system becomes a crucial step in ensuring safe and stable operation as well as prevention. To address this, a method for identifying vulnerable branches in electric-gas-thermal regional integrated energy systems is proposed. First, based on the unified energy route theory, unified energy flow modeling and calculations are performed for the electric-gas-thermal network to obtain the initial operating state of the network. At the same time, a set of hypothetical accidents for the regional integrated energy system is established, considering the impact of N-1 contingencies in the thermal and electric networks on the internal network. The post-fault operational state of the branches is then determined through N-1 analysis. Next, vulnerability analysis is conducted based on the operational characteristics of energy flow entropy changes and the structural characteristics of local concentration, and a comprehensive vulnerability index for the branches is proposed. Particle swarm optimization (PSO) is used to determine the weights of operational and structural vulnerabilities, ensuring the objectivity and accuracy of the evaluation process. The branches are then ranked according to the vulnerability index, allowing the identification of the system′s vulnerable branches. Finally, the method is applied to an IEEE 14-bus electric system, a 14-node gas network, and a 14-node thermal network to identify the vulnerable branches of the system. The experimental results show that the proposed method can reasonably reflect the actual conditions of the system, and the weights determined by the PSO algorithm can more effectively identify the vulnerable branches, improving the accuracy and reliability of the identification process.

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赵璐豪,崔双喜,郑丁园.考虑运行状态与拓扑结构的RIES脆弱支路辨识[J].电子测量技术,2024,47(23):15-24

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  • 在线发布日期: 2025-01-22
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