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Small Time-Step FPGA-Based Real-Time Simulation of Power Systems Including Multiple Converters

机译:基于小的时间步骤FPGA的电力系统的实时模拟,包括多个转换器

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摘要

This paper presents an FPGA-based Digital Real-Time Simulation (DRTS) environment for the analysis of Electromagnetic Transients (EMTs) of power systems that include multiple Power Electronic Converters (PECs). The main features of the proposed DRTS platform are that it i) employs two-value resistor switch model for PECs and thus avoids inaccuracies of Associate Discrete Circuit (ADC) model and ii) does not require separation of PECs by transmission lines (stub lines) and thus accurately represents PECs in close electrical proximity of each other. These features respectively result in a time-variant and large system admittance matrix which significantly increases the computation burden in each simulation time-step and can render it infeasible for real-time applications. To overcome this problem this paper introduces i) Switching-Network Partitioning (SNP) method which is tailored for PECs representation in FPGA and ii) Reformulated Modified Nodal Analysis (RMNA) method to enable computational parallelism between the solution of network and component models in FPGA. SNP enables solution-level partitioning of the PECs and the rest of the system. The developed DRTS platform enables sub-microsecond simulation time-step and provides a fixed hardware irrespective of the system configuration. Performance of the platform is evaluated for a study system and verified versus off-line simulation studies.
机译:本文介绍了一种基于FPGA的数字实时仿真(DRTS)环境,用于分析包括多个电力电子转换器(PEC)的电力系统的电磁瞬变(EMT)。所提出的DRTS平台的主要特点是I)采用了PEC的双值电阻开关模型,从而避免了关联离散电路(ADC)模型的不准确性,II)不需要通过传输线(短管)分离PEC因此,准确地表示彼此紧密电气接近的PEC。这些特征分别导致时变量和大型系统导纳矩阵,这显着增加了每个模拟时间步骤中的计算负担,并且可以使实时应用程序不可行。为了克服这个问题本文介绍了I)用于FPGA和II的PECS表示定制的切换网络分区(SNP)方法,其重新改造的修饰节点分析(RMNA)方法能够在FPGA中的网络和组件模型解决方案之间实现计算并行性。 SNP启用PEC和其余系统的解决方案级别分区。开发的DRTS平台可实现子微秒仿真时间步骤,无论系统配置如何提供固定硬件。对研究系统进行评估平台的性能,并验证了与离线模拟研究。

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