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基于基本调制技术的不对称多电平逆变器与多脉冲变换器的开发
Development of Fundamental Modulation Technique Based Asymmetric Multi-Level Inverter and Multi-Pulse Converter to Prevent Medium Voltage Drive From Harmonic Component
| 作者 | Rohit Kumar · Bhim Singh |
| 期刊 | IEEE Transactions on Industry Applications |
| 出版日期 | 2024年10月 |
| 技术分类 | 电动汽车驱动 |
| 技术标签 | 多电平 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 九电平逆变器 基本频率开关技术 面积均衡调制策略 功率质量 中压驱动系统 |
语言:
中文摘要
在高电平多电平逆变器中,需要采用低开关频率运行,以提高开关利用率,并使变流器在低功率损耗的情况下获得出色的效率曲线。此外,变速驱动在低于基速运行时需要进行电压电平与频率的调节。因此,本文针对一种九电平(1:1:2)不对称型减少开关级联 H 桥多电平逆变器(ARSCHB - MLI),提出了一种基于在线角度计算的新型基频开关调制技术,即面积均衡调制策略(AEMS)。大功率范围内的功率变流器应用广泛,这也增加了系统中的电能质量问题。为解决系统驱动端的问题,采用九电平逆变器为感应电机供电,该逆变器每相由十个开关和三个直流电压源构成。为提升电能质量,在不同调制指数值下计算在线角度,随着驱动速度的变化改变阶梯电压电平的宽度。该策略确保逆变器输出质量无论驱动运行频率如何,均符合相关标准要求。在电网端采用多脉冲变流器技术,以确保电能质量符合 IEEE 519 标准。本文为中压驱动系统功率变流器的设计、运行和控制提供了指导。
English Abstract
Low switching frequency operation is required in high-level multi–level inverter to enhance switch utilization as well as to gain excellent efficiency profile of converter with low power losses. Apart from this, variable speed drive requires voltage level and frequency variation when drive operates below base speed. Hence, a new fundamental frequency switching technique with an online angle calculation-based modulation technique is presented for a nine-level (1:1:2) asymmetric reduced switch cascaded H-bridge multi-level inverter (ARSCHB-MLI), where this technique is known as area equalization modulation strategy (AEMS). Power converters in high power range are often used, increasing power-quality issues in system. To overcome issues at drive end of system, induction motor is powered by a nine-level inverter, which is designed with a ten-switches and three-voltage DC sources per phase. For enhanced power quality performance, online angles are calculated at different values of modulation index, which changes width of steps voltage levels as speed variation of drive. This strategy ensures that quality of inverter output is acceptable as per standard regardless of drive's operating frequency. Multi-pulse converter technique is adopted at grid end to sustain power quality as per the IEEE 519 standard. This paper serves as a guideline of how one can design, operates and control of power converter for medium voltage drive system.
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SunView 深度解读
从阳光电源的业务视角来看,该论文提出的基于基频调制的非对称多电平逆变器技术具有重要的参考价值和应用潜力。论文核心技术——九电平不对称级联H桥逆变器(ARSCHB-MLI)采用1:1:2的直流源配置和区域均衡调制策略(AEMS),这与我司在大功率光伏逆变器和储能变流器领域追求的技术方向高度契合。
该技术的核心优势在于通过降低开关频率实现高效率运行和低功率损耗,这对于我司1500V及以上高压光伏系统和大型储能项目至关重要。特别是其在线角度计算的调制技术能够在不同调制指数下优化输出波形质量,这为我司应对复杂电网环境和宽范围功率输出需求提供了新思路。论文中每相仅需十个开关器件和三个直流源的拓扑设计,相比传统多电平方案显著降低了系统复杂度和成本,符合我司产品竞争力提升的战略需求。
从技术成熟度评估,该方案在中压传动领域的应用为我司拓展工商业储能和微电网市场提供了技术储备。论文采用多脉冲整流器配合逆变器满足IEEE 519谐波标准的系统级设计思路,与我司强调的全链路电能质量管理理念一致。然而,技术挑战在于非对称直流源配置在光伏应用中需要精细的MPPT协调控制,以及储能系统中电池组不均衡管理的复杂性。
建议我司技术团队重点关注该调制策略在组串式逆变器和模块化储能PCS中的适配性研究,特别是在高海拔、高温等极端环境下的可靠性验证,以及与我司现有SiC功率器件平台的集成优化,为下一代高效率、高功率密度产品开发提供技术支撑。