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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Multi-Interval Efficiency Design Optimization for Permanent Magnet Synchronous Generators Used in Hybrid Electric Special Vehicles
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Multi-Interval Efficiency Design Optimization for Permanent Magnet Synchronous Generators Used in Hybrid Electric Special Vehicles

机译:混合电动特种车辆永磁同步发电机的多间隔效率设计优化

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摘要

This article presents a novel multi-interval efficiency optimization strategy to improve the overall driving cycle efficiency of permanent magnet synchronous generators for hybrid electric special vehicles. At first, the driving cycle rule of the hybrid electric special vehicles is investigated by mathematical statistics to fit the actual driving conditions. In addition, the multi-interval efficiency analytical model of permanent magnet generator is established for the most significant operating power intervals, i.e., 0-25%, 25-50%, 50-75%, and 75-100%. Then, the driving cycle efficiency is iteratively involved in the improved genetic algorithm program to obtain the optimized solution, which is also compared with the solution by the traditional rated efficiency optimization method to demonstrate the advantages of the proposed optimization method. Finally, the proposed optimal design is validated on a laboratory prototype of a 500-kW generation system under different load conditions.
机译:本文介绍了一种新型多间隔效率优化策略,以提高混合电动特殊车辆永磁同步发电机的总驾驶循环效率。首先,通过数学统计研究混合动力电动特殊车辆的驾驶循环规则以适应实际的驾驶条件。此外,为最重要的工作功率间隔建立永磁发生器的多间隔效率分析模型,即0-25%,25-50%,50-75%和75-100%。然后,驱动循环效率迭代地涉及改进的遗传算法程序,以获得优化的解决方案,该方案也与通过传统额定效率优化方法的解决方案进行比较,以证明所提出的优化方法的优点。最后,在不同负载条件下,在500千瓦生成系统的实验室原型上验证了所提出的最佳设计。

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