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基于载波的正弦脉宽调制技术在飞跨电容模块化多电平级联变换器中的应用

Carrier-based sinusoidal pulse-width modulation techniques for flying capacitor modular multi-level cascaded converter.

作者信息

Oghorada O J K, Zhang Li, Esan B A, Dickson Egbune

机构信息

Electrical & Information Engineering Department, Landmark University, Omu-Aran, Nigeria.

School of Electronic & Electrical Engineering, University of Leeds, Leeds, United Kingdom.

出版信息

Heliyon. 2019 Dec 24;5(12):e03022. doi: 10.1016/j.heliyon.2019.e03022. eCollection 2019 Dec.

Abstract

Carrier-based sinusoidal pulse-width modulation (PWM) techniques, such as phase disposoed PWM(PD-PWM) and phase shifted PWM (PS-PWM), are widely applied to control the modular multilevel cascaded converters (MMCC) having full H-bridge as sub-modules. This paper evaluates these PWM techniques when controlling a variant of the H-bridge MMCC, i.e. the MMCC five-level flying capacitor converter as sub-modules. This MMCC poses an extra challenge to PWM schemes; namely maintaining two inner floating capacitor voltage balancing. Two novel PWM techniques known as the swapped carrier PWM techniques are introduced for the control of this converter. The paper compares them with the two conventional ones using a performance metrics composed of voltage waveform performance, capability in natural flying capacitor voltage balancing, converter power loss, and switch utilisation. The results show that the proposed new PWM schemes outperform both conventional methods in both switching and conduction power losses and achieve similar performance like the PS-PWM under the three other metrics.

摘要

基于载波的正弦脉宽调制(PWM)技术,如相位布置PWM(PD - PWM)和移相PWM(PS - PWM),被广泛应用于控制以全H桥作为子模块的模块化多电平级联变换器(MMCC)。本文评估了这些PWM技术在控制一种H桥MMCC变体时的情况,该变体是以MMCC五电平飞跨电容变换器作为子模块。这种MMCC对PWM方案提出了额外的挑战,即维持两个内部飞跨电容的电压平衡。本文介绍了两种称为交换载波PWM技术的新型PWM技术来控制这种变换器。本文使用由电压波形性能、自然飞跨电容电压平衡能力、变换器功率损耗和开关利用率组成的性能指标,将它们与两种传统技术进行比较。结果表明,所提出的新PWM方案在开关损耗和导通损耗方面均优于两种传统方法,并且在其他三个指标下实现了与PS - PWM类似的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c515/7019084/52f95636ba8d/gr1.jpg

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