融合主动减振的增程混动系统动力域控制器开发

方成,郭圣刚,胡耀东,刘思源,徐可鹏,杨福源

车用发动机 ›› 2024, Vol. 0 ›› Issue (2) : 47.

车用发动机 ›› 2024, Vol. 0 ›› Issue (2) : 47. DOI: 10.3969/j.issn.1001-2222.2024.02.007
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融合主动减振的增程混动系统动力域控制器开发

  • 方成1,2,郭圣刚1,3,胡耀东1,刘思源3,徐可鹏3,杨福源1
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Development of Powertrain Domain Control Unit with Active Damping Control for Range-Extended Hybrid System

  • FANG Cheng1,2,GUO Shenggang1,3,HU Yaodong1,LIU Siyuan3,XU Kepeng3,YANG Fuyuan1
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摘要

针对增程混动系统的扭转振动问题,开发了一种基于多核单片机的动力域控制器,集成了整车控制、APU系统控制、发动机控制和电机控制的软硬件,在多核任务分配和核间协调的基础上,通过电机相位和发动机相位同步算法,利用矩形波进行扭矩补偿,实现了主动减振功能。试验结果表明:利用该控制器,恒转速倒拖工况发动机转速波动范围可以减少79.7%;倒拖起动工况和自由停机工况共振时,第一阶次频率分量的幅值降幅约42.9%。

Abstract

Aiming to reduce the torsional vibration of range-extended hybrid system, a powertrain domain control unit based on a multi-core microcontroller was developed. The softwares and hardwares of vehicle control, APU system control, engine control and motor control were integrated. Based on multi-core tasking and inter-core coordination, the synchronization algorithm between the motor phase and engine phase was used, the rectangular torque wave was used for torque compensation, and the active damping control was realized. The experimental results show that the engine speed fluctuation range can reduce by 79.7% under constant speed motoring conditions by using this controller. When the resonance of motoring starting conditions and free stop conditions happens, the amplitude of first-order frequency decreases by approximately 42.9%.

关键词

混合动力汽车 / 控制器 / 主动减振

Key words

hybrid vehicle / control unit / active damping control

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导出引用
方成,郭圣刚,胡耀东,刘思源,徐可鹏,杨福源. 融合主动减振的增程混动系统动力域控制器开发[J]. 车用发动机. 2024, 0(2): 47 https://doi.org/10.3969/j.issn.1001-2222.2024.02.007
FANG Cheng,GUO Shenggang,HU Yaodong,LIU Siyuan,XU Kepeng,YANG Fuyuan. Development of Powertrain Domain Control Unit with Active Damping Control for Range-Extended Hybrid System[J]. Vehicle Engine. 2024, 0(2): 47 https://doi.org/10.3969/j.issn.1001-2222.2024.02.007

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