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电动汽车驱动 PWM控制 ★ 5.0

一种新型最小直流电压纹波生成的脉宽调制选择算法

A New Minimum DC Voltage Ripple Generating PWM Selection Algorithm for Voltage Source Inverter

作者 Amol Ishwarrao Gedam · K. Ramachandra Sekhar · Nikhil Kumar
期刊 IEEE Journal of Emerging and Selected Topics in Power Electronics
出版日期 2024年9月
技术分类 电动汽车驱动
技术标签 PWM控制
相关度评分 ★★★★★ 5.0 / 5.0
关键词 电压源逆变器 直流电压纹波 脉宽调制 选择算法 数学建模
语言:

中文摘要

电压源逆变器(VSI)通过瞬时开关电压矢量生成平均输出电压,二者之差产生误差电压,导致直流侧电压和电流纹波。本文针对三相两电平VSI提出了一种新型最小直流电压纹波脉宽调制(PWM)选择算法。基于误差电压矢量法,建立了直流电容电流、电压纹波及电源电流纹波的数学模型,对比分析了连续PWM(CPWM)与不连续PWM(DPWM)在不同调制指数(ma)和负载角(δ)下的纹波特性,确定了最小纹波区域。据此提出自适应切换PWM选择策略,确保全工况下最小直流电压纹波。实验基于DSP C2000 TMS320F28379D平台验证了该方法的有效性。

English Abstract

The voltage source inverters (VSIs) generate the average output voltage using the instantaneous switching voltage vector. The difference between the average output voltage and instantaneous switching voltage vector produces the error voltage, contributing to dc voltage ripple and dc source current ripple. In this work, a novel minimum dc voltage ripple generating pulsewidth modulation (PWM) selection algorithm is proposed for three phase two level VSI. To elicit the minimum dc voltage ripple, first, the dc capacitor current, dc voltage ripple, and dc source current ripple are mathematically modeled for a three-phase two-level VSI using an error voltage vector approach. Based on mathematical modeling, different continuous PWM (CPWM) and discontinuous PWMs (DPWMs) are compared to derive the minimum dc voltage ripple. After comparison, the minimum dc voltage ripple regions is identified for CPWMs and DPWMs in modulation index ( m_a ) and load angle ( ) plane. Based on the identified regions, an adaptive switching PWM selection algorithm is proposed to ensure the minimum dc voltage ripple irrespective of the load operating conditions. The proposed method of selecting minimum voltage ripple yield PWMs is demonstrated on experimental prototype by implementing PWMs on DSP C2000 TMS320F28379D board.
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SunView 深度解读

该最小直流电压纹波PWM算法对阳光电源多条产品线具有直接应用价值。在ST系列储能变流器中,可显著降低直流侧电容电压纹波,延长电容寿命并提升系统可靠性,这对PowerTitan大型储能系统的长期稳定运行至关重要。在SG系列光伏逆变器中,该算法可减少直流母线电压波动,优化MPPT跟踪精度,提升发电效率。在电动汽车驱动和OBC充电机产品中,通过自适应CPWM/DPWM切换策略,可在全调制指数和负载角范围内实现最优纹波抑制,降低电磁干扰,减小直流侧滤波电容容量需求。该技术与阳光电源现有SiC器件应用和三电平拓扑形成协同优化,为构网型GFM控制提供更稳定的直流电压基础,具有显著的工程应用价值。