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首页> 外文期刊>Journal of Modern Power Systems and Clean Energy >Graph Computing Based Distributed Parallel Power Flow for AC/DC Systems with Improved Initial Estimate
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Graph Computing Based Distributed Parallel Power Flow for AC/DC Systems with Improved Initial Estimate

机译:图表计算基于AC / DC系统的分布式并联电流,具有改进的初始估计

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The sequential method is easy to integrate with existing large-scale alternating current (AC) power flow solvers and is therefore a common approach for solving the power flow of AC/direct current (DC) hybrid systems. In this paper, a highperformance graph computing based distributed parallel implementation of the sequential method with an improved initial estimate approach for hybrid AC/DC systems is developed. The proposed approach is capable of speeding up the entire computation process without compromising the accuracy of result. First, the AC/DC network is intuitively represented by a graph and stored in a graph database (GDB) to expedite data processing. Considering the interconnection of AC grids via high-voltage direct current (HVDC) links, the network is subsequently partitioned into independent areas which are naturally fit for distributed power flow analysis. For each area, the fast-decoupled power flow (FDPF) is employed with node-based parallel computing (NPC) and hierarchical parallel computing (HPC) to quickly identify system states. Furthermore, to reduce the alternate iterations in the sequential method, a new decoupled approach is utilized to achieve a good initial estimate for the New-ton-Raphson method. With the improved initial estimate, the sequential method can converge in fewer iterations. Consequently, the proposed approach allows for significant reduction in computing time and is able to meet the requirement of the real-time analysis platform for power system. The performance is verified on standard IEEE 300-bus system, extended large-scale systems, and a practical 11119-bus system in China.
机译:顺序方法易于与现有的大型交流电流(AC)电流求解器集成,因此是用于求解AC /直流(DC)混合系统的电流的常用方法。在本文中,开发了一种具有改进的混合AC / DC系统的顺序方法的基于顺序平行实现的高性能平行实现。所提出的方法能够加速整个计算过程,而不会影响结果的准确性。首先,AC / DC网络通过图形直观地表示并存储在图形数据库(GDB)中以加快数据处理。考虑到AC电网通过高压直流(HVDC)链路的互连,随后将网络划分为自然适合分布式功率流分析的独立区域。对于每个区域,快速分离的电流(FDPF)与基于节点的并行计算(NPC)和分层并行计算(HPC)一起使用,以快速识别系统状态。此外,为了减少顺序方法中的替代迭代,利用了一种新的去耦方法来实现新吨raphson方法的良好初始估计。随着初始估计的改进,顺序方法可以在更少的迭代中收敛。因此,所提出的方法允许计算时间显着降低,并且能够满足电力系统实时分析平台的要求。在标准IEEE 300-Bus系统,扩展大型系统和中国实用11119岸系统上验证了该性能。

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