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首页> 外文期刊>IEEE transactions on industrial informatics >FPGA Implementation of a PWM for a Three-Phase DC–AC Multilevel Active-Clamped Converter
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FPGA Implementation of a PWM for a Three-Phase DC–AC Multilevel Active-Clamped Converter

机译:三相DC-AC多电平有源钳位转换器的PWM的FPGA实现

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摘要

With the aim to implement a suitable controller for a three-phase dc–ac multilevel active-clamped converter to enable its use in practice, and as a first step toward a full closed-loop converter control implementation into a single field-programmable gate array (FPGA) device, this paper presents the structure and features of an FPGA implementation of an appropriate pulsewidth modulation (PWM) strategy. The selected PWM strategy guarantees dc-link capacitor voltage balance in every switching cycle, and covers both the undermodulation and overmodulation regions. A flexible implementation is conceived, allowing the variation of important operating parameters, such as the modulation index and switching frequency, through a simple user interface. The key aspects to achieve an efficient and robust FPGA implementation are discussed. Experimental results in a four-level converter prototype controlled with an Altera Cyclone III device under different operating conditions match fairly well with the expected results obtained through simulation, thus verifying the accurate performance of the FPGA-based modulator.
机译:目的是为三相dc-ac多电平有源钳位转换器实现一个合适的控制器,以使其能够在实践中使用,并且是朝着将完整闭环转换器控制实现为单个现场可编程门阵列的第一步(FPGA)器件,本文介绍了适当脉冲宽度调制(PWM)策略的FPGA实现的结构和功能。所选的PWM策略可确保每个开关周期中的直流母线电容器电压平衡,并涵盖欠调制和过调制区域。构想了一种灵活的实现方式,允许通过简单的用户界面来更改重要的工作参数,例如调制指数和开关频率。讨论了实现高效,强大的FPGA实现的关键方面。由Altera Cyclone III器件控制的四电平转换器原型在不同工作条件下的实验结果与通过仿真获得的预期结果相当吻合,从而验证了基于FPGA的调制器的准确性能。

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