Pulse Pattern Optimization for Medium Voltage 3-Level NPC Converter Using Open Source Optimization Tools in Julia

Matija Varga, Nikola Turk, Dominik Cikač, N. Bulić
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Abstract

This paper presents an optimization approach for the switching angles used in medium voltage 3-level Neutral Point Clamped (NPC) converters with the active front end. Medium voltage (MV) drives use low switching frequencies to reduce the converters' switching losses. This fact limits the number of available switching angles that can be used. Therefore, 5 and 7 pulses (i.e., switching angles) in quarter-wave symmetry are considered in this research. Insulated Gate Bipolar Transistors (IGBTs) or Integrated Gate Commutated Thyristors (IGCTs), which are used in MV drives because of their capability to provide high power density, present obstacles in the optimization. Their high minimum on-time and dead time, which must be considered during the optimization process, are among the challenges associated with the use of IGBTs or IGCTs in MV drives. On-time refers to the duration in which the IGBT is conducting current, while dead-time refers to the interval in which the IGBT is turned off and cannot conduct current. The dead time is introduced to prevent shoot-through currents in the inverter circuit, which can cause damage to the IGBTs and other components. This research aims to improve the switching angles of pulse patterns to minimize low-order harmonics in a wide range of modulation index while meeting all the mentioned requirements and generating the desired fundamental harmonic. To achieve this, a modulation technique called Selective Harmonic Elimination (SHE) Pulse-Width Modulation (PWM) has been employed, which effectively reduces the low-order harmonic distortion caused by converters. The optimization process is performed using open-source optimization tools in the Julia programming language. The research results demonstrate that the proposed approach can effectively optimize the pulse pattern angles of medium voltage 3-level NPC converters, resulting in improved power quality and reduced harmonic distortion while ensuring the continuity of switching angles.
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在Julia中使用开源优化工具进行中压3电平NPC转换器的脉冲模式优化
本文提出了一种具有有源前端的中压3电平中性点箝位(NPC)变换器开关角的优化方法。中压(MV)驱动器使用低开关频率来降低变换器的开关损耗。这一事实限制了可用开关角度的数量。因此,本研究考虑了四分之一波对称中的5和7个脉冲(即开关角)。绝缘栅双极晶体管(igbt)或集成栅整流晶闸管(igct)由于其提供高功率密度的能力而用于中压驱动器,但在优化方面存在障碍。在优化过程中必须考虑到igbt或igct具有较高的最小导通时间和死区时间,这是在中压驱动器中使用igbt或igct所面临的挑战之一。导通时间是指IGBT导通电流的持续时间,死区时间是指IGBT关断而不能导通电流的时间间隔。在逆变电路中引入死区时间是为了防止击穿电流,击穿电流会对igbt和其他元件造成损坏。本研究旨在改善脉冲模式的开关角度,在满足上述所有要求的同时,产生所需的基频谐波,从而在宽调制指数范围内最小化低阶谐波。为了实现这一目标,一种被称为选择性谐波消除(SHE)脉宽调制(PWM)的调制技术被采用,它有效地降低了由变换器引起的低阶谐波失真。优化过程是使用Julia编程语言中的开源优化工具执行的。研究结果表明,该方法可以有效地优化中压3电平NPC变换器的脉冲方向角,在保证开关角连续性的同时,提高了电能质量,降低了谐波失真。
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