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机构地区:[1]中国矿业大学信息与电气工程学院,江苏徐州221008
出 处:《中国矿业大学学报》2013年第5期859-865,共7页Journal of China University of Mining & Technology
基 金:国家自然科学基金项目(51077124);江苏省2012年度普通高校研究生科研创新计划项目(CXZZ12_0930);江苏省"青蓝工程"
摘 要:针对传统获取PWM环节输出谐波方法易受仿真步长、噪声、精度等影响,提出一种基于二重傅里叶积分的精确解析法,深入分析了三电平PWM的输出谐波性能.首先建立三电平变换器输出相桥臂电压的二重傅里叶方程;然后根据不同采样方式,引入对应的积分界限,解析分析其谐波成分.研究结果表明:不对称规则采样方式与对称规则采样相比,具有更好的谐波输出性能;三角载波调制时总谐波畸变率降低8.86%,空间矢量调制时能降低26.71%.理论推导与仿真结果对比分析表明,与常规FFT工具箱获取谐波畸变率相比,所提精确解析法能有效避免仿真误差、噪声等影响,具有更高的准确性.In order to avoid the influence of simulation step size, noise and accuracy problems in the traditional approaches in'getting the output harmonic performance of pulse width modula- tion (PWM), using the double fourier integral proposed a novel analytic method to deeply ana- lyze the harmonic output performance of the three-level PWM strategy. After the double fou- rier equations of phase bridge voltage are established, this study introduced the different inte- gral boundaries in terms of the sampling mode. The results show that: the asymmetric sam- piing mode has better harmonic output performance in contrast with the symmetric one; when adopting the triangular carrier PWM, the THD of asymmetric regular sampled PWM reduces 8.86% compared with the symmetric one, and 26. 71% reduction when using space vector PWM. The theoretical derivation and simulation results indicate that, the proposed analytic so- lution can avoid the effect of simulation errors and noise, and obtain a better accuracy in com- parison with the method using FFT toolbox.
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