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首页> 外文期刊>IEEE Transactions on Industrial Electronics >A Real-Time Nonlinear Hysteretic Power Transformer Transient Model on FPGA
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A Real-Time Nonlinear Hysteretic Power Transformer Transient Model on FPGA

机译:FPGA上的实时非线性磁滞电力变压器暂态模型

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A transformer is the most widely used equipment in power systems to transfer energy from one circuit to another. For real-time electromagnetic transient simulation, this paper presents a digital hardware emulation of the power transformer on a field programmable gate array. The linear model of the transformer is based on the admittance matrix approach. Detailed real-time modeling of the transient nonlinearities, including hysteresis phenomena, is carried out based on the Preisach theory. The nonlinear solution in real time is undertaken using a full Newton iteration. All the hardware modules for the transformer emulation were developed in VHDL. The model is fully parallelized and pipelined to achieve the lowest latency and the smallest hardware resource consumption. Real-time results on the oscilloscope are compared with off-line results from the ATP software.
机译:变压器是电力系统中使用最广泛的设备,用于将能量从一个电路传递到另一个电路。对于实时电磁瞬态仿真,本文提出了现场可编程门阵列上电源变压器的数字硬件仿真。变压器的线性模型基于导纳矩阵方法。基于Preisach理论对瞬态非线性(包括磁滞现象)进行了详细的实时建模。使用完整的牛顿迭代进行实时非线性求解。用于变压器仿真的所有硬件模块都是在VHDL中开发的。该模型经过完全并行化和流水线处理,以实现最低的延迟和最小的硬件资源消耗。将示波器上的实时结果与ATP软件的离线结果进行比较。

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