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A modular parallelization framework for power flow transfer analysis of large-scale power systems

机译:大型电力系统电力传递分析模块化平行化框架

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Power flow transfer (PFT) analysis under various anticipated faults in advance is important for securing power system operations. In China, PSD-BPA software is the most widely used tool for power system analysis, but its input/output interface is easily adapted for PFT analysis, which is also difficult due to its computationally intensity. To solve this issue, and achieve a fast and accurate PFT analysis, a modular parallelization framework is developed in this paper. Two major contributions are included. One is several integrated PFT analysis modules, including parameter initialization, fault setting, network integrity detection, reasonableness identification and result analysis. The other is a parallelization technique for enhancing computation efficiency using a Fork/Join framework. The proposed framework has been tested and validated by the IEEE 39 bus reference power system. Furthermore, it has been applied to a practical power network with 11052 buses and 12487 branches in the Yunnan Power Grid of China, providing decision support for large-scale power system analysis.
机译:预先在各种预期故障下的功率流动转移(PFT)分析对于保护电力系统操作非常重要。在中国,PSD-BPA软件是最广泛使用的电力系统分析工具,但其输入/输出接口很容易适用于PFT分析,这也难以实现其计算强度。为了解决这个问题,并实现了快速准确的PFT分析,本文开发了一种模块化的并行化框架。包括两项主要捐款。一个是几个集成的PFT分析模块,包括参数初始化,故障设置,网络完整性检测,合理性识别和结果分析。另一个是使用叉/加入框架提高计算效率的并行化技术。所提出的框架已经通过IEEE 39总线参考电力系统进行了测试和验证。此外,它已应用于具有11052公共汽车的实用电力网络,并在中国的云南电网中进行了12487分支,为大规模电力系统分析提供决策支持。

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