Damping of low-frequency oscillations using Takagi-Sugeno Fuzzy stabilizer in real-time

L. Hassan, Mahmoud Moghavvemi, H. Almurib, K. Muttaqi
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引用次数: 3

Abstract

A new methodology for the implementation of a power system model for damping low-frequency oscillations in field programmable gate array (FPGA)-based real-time simulator is proposed. The continuous form of the model is converted to discrete-time domain model, and then reduced to block diagrams involving the delay operators and gains for the implementation in the FPGA. The hardware implementation of a power system stabilizer (PSS) to control the system is also introduced using FPGA. The real-time implementation of the proposed approach in an FPGA is described. To verify the effectiveness of the proposed FPGA-based simulator, a single machine infinite bus system (SMIB) is tested with the stabilizer under different operating conditions. Results show the capability of implementing the power system with the stabilizer in an FPGA. Additionally, very short time and constant computation time per simulation time-step are established.
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利用Takagi-Sugeno模糊稳定器实时抑制低频振荡
提出了一种在现场可编程门阵列(FPGA)实时仿真器中实现电力系统低频振荡阻尼模型的新方法。将模型的连续形式转换为离散时域模型,然后将其简化为包含延迟算子和增益的框图,以便在FPGA中实现。文中还介绍了利用FPGA实现电力系统稳定器控制系统的硬件实现。描述了该方法在FPGA上的实时实现。为了验证所提出的基于fpga的仿真器的有效性,在单机无限总线系统(SMIB)上进行了不同工作条件下的稳定器测试。结果表明,该稳压器在FPGA上实现电力系统稳定的能力。此外,每个模拟时间步长的计算时间非常短,且计算时间恒定。
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