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Implementation of an Efficient SVPWM Technique to a Cascaded Multilevel Inverter-Based SAF

机译:在基于级联的多级逆变器SAF中实现高效的SVPWM技术

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A modified SVM technique based on generic algorithm is configured as per the SAF system structure. The proposed SVM technique is superior compared to the conventional SVM technique and carrier-based PWM due its faster response, less computational time and less memory requirement. The harmonic mitigation standard using the SVM approach is significant under ideal grid voltage. The switching state at any point can be easily determined from the SVM algorithm which enables effective real-time experimentation with lesser computational problem. The enactment of the SAF is investigated using i_d - i_q control technique and a comparative evaluation is carried out by applying carrier-based PWM and SVM technique.
机译:根据SAF系统结构配置了基于通用算法的修改的SVM技术。 与传统的SVM技术和基于载波的PWM相比,所提出的SVM技术优异,由于其更快的响应,较少的计算时间和更少的内存要求。 使用SVM方法的谐波缓解标准在理想的电网电压下显着。 可以从SVM算法容易地确定任何点处的切换状态,这使得能够具有较小的计算问题的有效实时实验。 使用I_D-I_Q控制技术研究SAF的制定,通过应用基于载体的PWM和SVM技术进行比较评估。

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