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车用超高速永磁电机驱动控制技术综述 被引量:8
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作者 林程 徐垚 +2 位作者 邢济垒 庄兴明 蒋雄威 《汽车工程》 EI CSCD 北大核心 2022年第7期1049-1058,共10页
超高速永磁电机具有体积小、效率和功率密度高等优点,广泛应用于燃料电池空压机和电动涡轮增压器等车用领域。小电感和高基频等特性,使其驱动控制比常速永磁电机难度更大。本文从电路拓扑、电压调制策略匹配和无位置传感器控制3个方面... 超高速永磁电机具有体积小、效率和功率密度高等优点,广泛应用于燃料电池空压机和电动涡轮增压器等车用领域。小电感和高基频等特性,使其驱动控制比常速永磁电机难度更大。本文从电路拓扑、电压调制策略匹配和无位置传感器控制3个方面详细论述车用超高速永磁电机驱动控制技术的研究现状,总结各类技术的研究热点,通过优缺点对比,给出了评价。最后展望了未来发展趋势。 展开更多
关键词 超高速永磁电机 电路拓扑 电压调制策略 无位置传感器控制
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电动汽车永磁同步驱动电机控制器用变权重叠加型过调制方法 被引量:2
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作者 林程 蒋雄威 +3 位作者 庄兴明 刘焕然 邢济垒 高帅 《汽车工程》 EI CSCD 北大核心 2022年第11期1725-1734,1754,共11页
电动汽车驱动电机控制器中使用过调制方法能提升电机驱动系统最大输出功率,增强高转速区域的转矩输出能力和转速调节能力,然而传统过调制方法在过调制Ⅱ区存在电压突变的问题,导致电机驱动系统输出转矩抖动较大,影响整车动力性能和NVH... 电动汽车驱动电机控制器中使用过调制方法能提升电机驱动系统最大输出功率,增强高转速区域的转矩输出能力和转速调节能力,然而传统过调制方法在过调制Ⅱ区存在电压突变的问题,导致电机驱动系统输出转矩抖动较大,影响整车动力性能和NVH性能。针对这一问题,本文提出一种变权重叠加型过调制方法。该方法通过将参考电压的相位角引入叠加权重因子的计算中,消除了传统过调制方法中存在的电压突变,降低了谐波畸变率。仿真和试验结果表明,该方法能提升驱动电机控制的电流稳定性,减小电机驱动系统输出转矩的抖动,使电动汽车电机驱动系统高转速区域内能输出最大转矩和最大转速。 展开更多
关键词 电动汽车 电机控制器 空间矢量脉宽调制 过调制 谐波畸变率
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Coupling Characteristics and Control of Dual Mechanical Port Machine with Spoke Type Permanent Magnet Arrangement
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作者 zhuang xingming SONG Qiang +2 位作者 WEN Xuhui ZHAO Feng FAN Tao 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2014年第6期1186-1202,共17页
Dual mechanical port machine(DMPM), as a novel electromechanical energy conversion device, has attracted widespread attention. DMPM with spoke type permanent magnet arrangements(STPM-DMPM), which is one of several... Dual mechanical port machine(DMPM), as a novel electromechanical energy conversion device, has attracted widespread attention. DMPM with spoke type permanent magnet arrangements(STPM-DMPM), which is one of several types of DMPM, has been of interest recently. The unique coupling characteristics of STPM-DMPM are beneficial to improving system performance, but these same characteristics increase the difficulties of control. Now there has been little research about the control of STPM-DMPM, and this has hindered its practical application. Based on a mathematical model of STPM-DMPM, the coupling characteristics and the merits and demerits of such devices are analyzed as applied to a hybrid system. The control strategies for improving the disadvantages and for utilizing the advantage of coupling are researched. In order to weaken the interaction effect of torque outputs in the inner motor and the outer motor that results from coupling in STPM-DMPM, a decoupling control method based on equivalent current control is proposed, and independent torque control for the inner motor and outer motor is achieved. In order to solve address the problem of adequately utilization of coupling, minimizing the overall copper loss of the inner motor and the outer motor of STPM-DMPM is taken as the optimization objective for optimal control, and the purpose of utilizing the coupling adequately and reasonably is achieved. The verification tests of the proposed decoupling control and optimal control strategies are carried out on a prototype STPM-DMPM, and the experimental results show that the interaction effect of torque outputs in the inner motor and the outer motor can be markedly weakened through use of the control method. The overall copper loss of the inner motor and the outer motor can be markedly reduced through use of the optimal control method, while the power output remains unchanged. A breakthrough in the control problem of STPM-DMPM is accomplished by combining the control methods. Good performance in the control of STPM-DMPM will enhance its practicality, particularly as applied to hybrid systems. 展开更多
关键词 dual mechanical port machine spoke type permanent magnet arrangement coupling characteristics decoupling control optimal control
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