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一种考虑高频特性的单相集成式电力充电系统及其在双电机驱动电动汽车中的应用
A Single-Phase Integrated Power Charger Considering High-Frequency Behavior for Two Motor Drives Fed Electric Vehicles
| 作者 | Abdul Azeem · A. V. Ravi Teja · Saifullah Payami |
| 期刊 | IEEE Journal of Emerging and Selected Topics in Power Electronics |
| 出版日期 | 2024年9月 |
| 技术分类 | 电动汽车驱动 |
| 技术标签 | 储能系统 可靠性分析 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 多电机电动汽车 集成式充电器 高频特性 效率评估 双电机驱动系统 |
语言:
中文摘要
本文提出一种面向多电机电动汽车的全集成式电力充电器(IPC)系统。该系统利用多电机驱动架构固有的电机与逆变器模块实现高功率充电,无需对主电路进行任何修改或重构。研究深入分析了IPC运行过程中电机电感的高频特性变化,对理解开关频率下的绕组行为具有重要意义。通过MATLAB/Simulink仿真与实验样机在不同功率等级下验证了系统的有效性,并依据IEEE 519-2022标准评估输入功率因数与总谐波畸变率,确保良好的电能质量。该系统无需额外硬件,兼容单相230 V、50–60 Hz电源,具备高效率与实用性。
English Abstract
This article introduces a fully integrated power charger (IPC) system designed for multimotor electric vehicles (EVs). The multimotor drive system, known for its superior acceleration and power capabilities, demands efficient and high-power charging solutions. The high-power charging capability is achieved by utilizing both motor and inverter modules as an IPC, which is an inherent feature of multimotor drive system. In the proposed IPC system, both traction inverter and machine winding are utilized without any modification or reconfiguration in the power circuit. This article also delves into the high-frequency behavior of machine inductance variation during IPC operation, which is critical for understanding winding behavior at the switching frequency. The proposed system is validated through MATLAB/Simulink and a laboratory prototype across various power levels. Efficiency and power quality are assessed by monitoring input power factor (PF) and total harmonic distortion, aligning the system with IEEE 519-2022 standards. The proposed system is characterized by notable features, such as the absence of additional hardware requirements and compatibility with a single-phase 230-V, 50–60-Hz power outlet. The results prove the viability and reliability of the proposed IPC operation with the two-motor drivetrain system.
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SunView 深度解读
该集成式充电技术对阳光电源车载OBC充电机和电机驱动产品线具有重要参考价值。研究提出的无需额外硬件的充电方案,可直接应用于阳光电源电动汽车动力系统集成设计,通过复用电机绕组和逆变器模块实现充电功能,显著降低系统成本和体积。文中对电机电感高频特性的深入分析,为阳光电源优化SiC/GaN器件在高开关频率下的应用提供理论依据,有助于提升充电效率和电磁兼容性能。符合IEEE 519-2022标准的电能质量控制策略,可借鉴至ST系列储能变流器的并网控制算法中,提升电网友好性。该技术与阳光电源在功率变换拓扑和多电机协同控制方面的技术积累高度契合,可推动车载充电系统向高集成度、高可靠性方向发展。