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首页> 外文期刊>American journal of applied sciences >Design of Field Programmable Gate Array Based Emulators for Motor Control Applications
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Design of Field Programmable Gate Array Based Emulators for Motor Control Applications

机译:基于现场可编程门阵列的电机控制仿真器设计

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Problem statement: Field Programmable Gate Array (FPGA) circuits play a significant role in major recent embedded process control designs. However, exploiting these platforms requires deep hardware conception skills and remains an important time consuming stage in a design flow. High Level Synthesis technique avoids this bottleneck and increases design productivity as witnessed by industry specialists. Approach: This study proposes to apply this technique for the conception and implementation of a Real Time Direct Current Machine (RTDCM) emulator for an embedded control application. Results: Several FPGA-based configuration scenarios are studied. A series of tests including design and timing-precision analysis were conducted to discuss and validate the obtained hardware architectures. Conclusion/Recommendations: The proposed methodology has accelerated the design time besides it has provided an extra time to refine the hardware core of the DCM emulator. The high level synthesis technique can be applied to the control field especially to test with low cost and short delays newest algorithms and motor models.
机译:问题陈述:现场可编程门阵列(FPGA)电路在最近的主要嵌入式过程控制设计中起着重要作用。但是,利用这些平台需要深入的硬件概念技能,并且在设计流程中仍然是重要的耗时阶段。高水平综合技术避免了这一瓶颈,并提高了行业专家的目睹的设计生产率。方法:本研究建议将该技术应用于嵌入式控制应用的实时直流电机(RTDCM)仿真器的概念和实现。结果:研究了几种基于FPGA的配置方案。进行了包括设计和时序精度分析在内的一系列测试,以讨论和验证所获得的硬件体系结构。结论/建议:所提出的方法不仅缩短了设计时间,而且还提供了额外的时间来完善DCM仿真器的硬件内核。高级综合技术可以应用于控制领域,尤其是用于低成本,短时延的最新算法和电机模型的测试。

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