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A Study on Front End Auxiliary Drive(FEAD) System of 48V Mild Hybrid Engine

机译:48V温和混合发动机前端辅助驱动(FEAD)系统的研究

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48V mild hybrid engine is one of major eco-friendly technology for global CO_2 reduction policy. The 48V mild hybrid engine enables to operate torque boost, recuperation and ISG status by MHSG(Mild Hybrid Starter and Generator). The FEAD(Front End Auxiliary Drive) system is a very important role to transfer MHSG power to crankshaft at the mild hybrid engine. The conventional FEAD configuration is relatively simple because it transfers power from crankshaft to auxiliary drive components in one direction. But the FEAD configuration of 48V mild hybrid engine is not simple due to bidirectional power transmission between crankshaft and MHSG. For instance, in case of torque boost mode, the tight side of auxiliary belt is entry span of MHSG. On the contrary, the tight side of auxiliary belt is exit span of MHSG at recuperation mode. As a result, to continue auxiliary belt tension constantly is very difficult and important for 48V mild hybrid engine development because the change of belt tension is very frequently. The purpose of this paper verifies the FEAD dynamic characteristics of 48V mild hybrid engine through functionality measurement. This paper shows 48V mild hybrid system configuration for dynamometer bench test with additional 48V power supply/MHSG controller and method for FEAD functionality test. As a result of measurement, MHSG start condition is critical for FEAD dynamics. The momentary slip at MHSG pulley reaches approximately maximum 80%. To reduce the momentary slip, several tests are conducted. The results show that the engine start torque reduction or the short start time can reduce momentary slip enough. This paper also shows the pendulum tensioner behavior, slip result and belt span vibration during MHSG torque boost and recuperation condition.
机译:48V温和的混合动力车引擎是全球CO_2减少政策的主要环保技术之一。 48V轻度混合动力发动机可以通过MHSG(温和混合启动器和发电机)操作扭矩升压,恢复和ISG状态。 FEAD(前端辅助驱动)系统是在温和的混合动力发动机处将MHSG电力转移到曲轴的一个非常重要的作用。传统的粉丝配置相对简单,因为它在一个方向上传递从曲轴到辅助驱动部件的电力。但由于曲轴和MHSG之间的双向动力传输,48V温和混合动力引擎的粉丝配置并不简单。例如,在扭矩升压模式的情况下,辅助带的紧密侧是MHSG的入口跨度。相反,辅助带的紧张侧是恢复模式下MHSG的出口跨度。因此,为了不断地继续辅助皮带张力,对于48V温和的混合发动机开发,对于48V轻度混合发动机开发,因为皮带张力的变化非常繁多。本文的目的是通过功能测量来验证48V温和混合发动机的FEAD动态特性。本文显示了48V温和的混合系统配置,用于采用额外的48V电源/ MHSG控制器和用于粉体功能测试的方法。由于测量结果,MHSG启动条件对于粉体动态至关重要。 MHSG滑轮的瞬间滑动达到大约最大80%。为了减少瞬间的滑动,进行了几次测试。结果表明,发动机启动扭矩减小或短开始时间可以减少瞬间滑动。本文还示出了在MHSG扭矩升压和恢复条件下的摆动张紧器行为,滑动结果和皮带跨度振动。

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