← 返回
用于光伏和燃料电池系统的隔离型三相并网反激逆变器的不连续调制技术及选择性谐波补偿
Discontinuous Modulation Technique for Isolated Three-Phase Grid Connected Flyback Inverter With Selective Harmonic Compensation for PV and Fuel Cell Systems
| 作者 | Ahmed Ismail M. Ali · Abdelfatah Ali · Mostafa F. Shaaban · Ahmed Abdelhakim · Alaaeldien Hassan · Mahmoud A. Sayed |
| 期刊 | IEEE Journal of Emerging and Selected Topics in Power Electronics |
| 出版日期 | 2024年11月 |
| 技术分类 | 光伏发电技术 |
| 技术标签 | 储能系统 DC-DC变换器 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 单级逆变器 差分结构反激逆变器 连续调制方案 不连续调制方案 选择性谐波补偿 |
语言:
中文摘要
差分结构单级反激逆变器(DSFI)具有元件少、升降压能力、低成本、小体积和高功率密度等优势。传统连续调制策略(CMS)虽可抑制低次谐波,但导致模块间环流增大,降低效率。本文提出采用不连续调制策略(DMS)用于三相DSFI,并对比分析其在CMS与DMS下的性能。引入单极选择性谐波补偿(SHC)环路抑制二次谐波。DMS有效降低器件电压应力与模块间环流,提升系统效率。实验基于1.6 kW并网原型机验证了CMS与DMS下DSFI的有效性。
English Abstract
Single-stage inverters, such as the proposed differentially structured flyback inverter (DSFI), offer many features, including reduced component count, voltage step-up/step-down capability, minimized cost and footprint, as well as high power density operation. Differential-type inverters comprise three dc-dc converters that are linked in parallel at the input side and differentially from the grid side. These structures are commonly modulated using continuous modulation schemes (CMSs) for simpler operation and low-order harmonic suppression. In the CMS, the three dc-dc modules are activated for the whole operating period, which increases the circulating power between the flyback modules and adversely affects the inverter efficiency. This article, therefore, applies the discontinuous modulation scheme (DMS) scheme for single-stage, three-phase DSFI and provides a comprehensive evaluation of the three-phase DSFI under CMS and DMS schemes. In addition, a simple single-pole selective harmonic compensation (SHC) loop is used for second-order harmonic compensation. The CMS reduces the low-order harmonic components in the grid currents; however, the voltage stress across the inverter’s different components is increased with increased circulating power. On the other hand, the proposed DMS reduces the voltage stress across the different components and the circulating power between the inverter’s modules, resulting in, as a consequence, enhanced system efficiency. The proposed DSFI system is experimentally validated under CMS and DMS based on a 1.6 kW prototype in grid connected mode.
S
SunView 深度解读
该不连续调制技术对阳光电源SG系列光伏逆变器和ST储能变流器具有重要应用价值。DSFI拓扑的单级升降压能力可简化SG系列组串逆变器的宽电压输入设计,特别适用于低压启动场景。DMS策略通过降低模块间环流和器件电压应力,可提升多模块并联系统效率1-2%,直接优化PowerTitan储能系统的功率模块设计。选择性谐波补偿技术可集成到阳光电源现有MPPT算法中,抑制二次谐波对直流侧的影响,提升燃料电池等新型能源接入的电能质量。该技术的高功率密度特性与阳光电源1500V高压系统和SiC器件应用方向高度契合,为下一代紧凑型逆变器开发提供技术储备。