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Low cost FPGA implementation of SPWM using dynamically configurable switching frequency for three phase voltage source inverter

机译:使用三相电压源逆变器的动态可配置开关频率的SPWM的低成本FPGA实现

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This paper describes the design, implementation and analysis of FPGA based High Frequency Switching Sinusoidal Pulse Width Modulation (SPWM) generator for the application of three-phase DC/AC inverters using Pipelined CORDIC algorithm. The carrier frequency of up to 4 MHz and operating frequency of 256 MHz is achieved. The switching frequency can be dynamically reconfigurable on real time by the user/external input signal ranging from 312.5 KHz to 256 MHz, which has wide application in the area of DC/AC inverters, thus allowing the flexibility to adapt for different power switching devices which has different non-linear characteristics. The work also includes the analysis of Total Harmonic Distortion (THD) using MATLAB, which shows the reduction in harmonic content. The entire architecture has been implemented by using the smallest FPGA XC6SLX4-TQG144 available in Xilinx Spartan 6 family. The proposed architecture exhibits highest switching frequency, lower power consumption, lower area and generating the stable SPWM waveform by using a low cost FPGA available in the market.
机译:本文介绍了基于FPGA的高频PWM正弦脉宽调制(SPWM)发生器的设计,实现和分析,该发生器将使用流水线CORDIC算法应用于三相DC / AC逆变器。实现了高达4 MHz的载波频率和256 MHz的工作频率。用户/外部输入信号范围从312.5 KHz到256 MHz,开关频率可以实时动态重新配置,在DC / AC逆变器领域具有广泛的应用,因此可以灵活地适应不同的功率开关设备具有不同的非线性特征。这项工作还包括使用MATLAB分析总谐波失真(THD),这表明谐波含量的减少。整个架构是通过使用Xilinx Spartan 6系列中可用的最小的FPGA XC6SLX4-TQG144来实现的。所提出的架构具有最高的开关频率,更低的功耗,更小的面积,并通过使用市场上可用的低成本FPGA生成稳定的SPWM波形。

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