ultrazohm -电力电子系统的开源快速控制原型平台

E. Liegmann, T. Schindler, P. Karamanakos, A. Dietz, R. Kennel
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引用次数: 7

摘要

本文介绍了两个由开源平台UltraZohm促进的快速控制原型(RCP)用例。公开可用UltraZohm开发框架简化了从模拟试验台。该框架为现场可编程门阵列(fpga)提供了自动代码生成的集成,既可以使用基于HDL编码器的Simulink模型,也可以通过Vivado高级合成工具将c++代码合成为VHDL。第一个用例侧重于片上环内控制器设置的实现细节,其中在FPGA中模拟永磁体同步机,采样频率为2 MHz。第二个用例给出了球体解码算法的实时高效实现,该算法用于解决三电平中性点箝位逆变器驱动感应电机的长视界有限控制集模型预测控制问题。基于小型样机的实验结果证实,该算法可以在FPGA上实时执行,执行时间为几十微秒。这两个用例都强调了在电力电子及其控制研究中使用高性能RCP平台的好处。
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UltraZohm—An Open-Source Rapid Control Prototyping Platform for Power Electronic Systems
This paper presents two rapid control prototyping (RCP) use cases facilitated by the open-source platform UltraZohm. The openly available UltraZohm development framework eases the transition from simulation to the test bench. The framework offers the integration of automatic code generation for field-programmable gate arrays (FPGAs), either by using Simulink models based on the HDL Coder, or by synthesizing C++ code into VHDL via the Vivado high-level synthesis tool. The first use case focuses on the implementation details of an on-chip controller-in-the-loop setup, where a permanent magnet synchronous machine is emulated in the FPGA with a sampling frequency of 2 MHz. The second use case presents an efficient real-time implementation of the sphere decoding algorithm employed to solve the long-horizon finite control set model predictive control problem for a three-level neutral point clamped inverter driving an induction machine. Experimental results based on a small-scale prototype confirm that the algorithm can be executed in real time on the FPGA, with an execution time of a few tens of microseconds. Both use cases highlight the benefits of using a high-performance RCP platform for research in power electronics and their control.
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审稿时长
24 weeks
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