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Nonlinear magnetic equivalent circuit-based real-time sen transformer electromagnetic transient model on FPGA for HIL emulation

机译:基于非线性磁等效电路的FPGA实时Sen变压器HIL仿真瞬态模型

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Strategic power-flow control using a Sen transformer (ST) can be a robust and cost-effective solution to relieve grid congestion due to increased installation of renewables. The ST consists of a multiwinding transformer and tap changer that can regulate the power flow through a transmission line by injecting a series-connected controllable voltage. This paper develops a realtime high-fidelity magnetic equivalent circuit-based electromagnetic transient model for the ST on the field-programmable gate array (FPGA) for hardware-in-the-loop applications. This geometry-based model was developed to depict the major flux paths in the transformer core, and complex nonlinear phenomena, such as saturation, hysteresis, and eddy currents. The entire real-time ST model and other power system components are emulated by hardware description language, employing the 32-b floating point precision on the FPGA chip. A fully paralleled and pipelined hardware architecture is developed to achieve accurate real-time emulation as well as the lowest latency and smallest hardware resource consumption. The real-time results are validated against 3-D finite-element simulation using JMAG software.
机译:使用Sen变压器(ST)进行战略性潮流控制可以是一种可靠且经济高效的解决方案,以缓解由于增加可再生能源的安装而导致的电网拥堵。 ST由多绕组变压器和分接开关组成,可通过注入串联的可控电压来调节通过传输线的功率。本文针对用于硬件在环应用的现场可编程门阵列(FPGA)上的ST,开发了基于实时的高保真磁等效电路的电磁瞬变模型。开发了基于几何的模型,以描绘变压器铁芯中的主要磁通路径以及复杂的非线性现象,例如饱和,磁滞和涡流。整个实时ST模型和其他电源系统组件均通过硬件描述语言进行仿真,并采用FPGA芯片上的32位浮点精度。开发了完全并行和流水线化的硬件体系结构,以实现准确的实时仿真以及最低的延迟和最小的硬件资源消耗。使用JMAG软件针对3-D有限元仿真对实时结果进行了验证。

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