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Electrification of turbocharger and supercharger for downsized internal combustion engines and hybrid electric vehicles-benefits and challenges

机译:涡轮增压器和增压器的电气化,用于缩小内燃机和混合动力电动车辆 - 益处和挑战

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Forced induction technology (turbocharging and supercharging) can enhance the performance of an internal combustion engine by compressing inlet air charge, allowing full engine power to be produced efficiently. As the fuel economy and greenhouse gas emission standards are projected to be much more stringent globally, the use of a forced induction engine in passenger cars and light duty trucks has become a new inevitable trend in the automotive industry. However, the conventional forced induction system suffers from the slow transient response, especially when the engine speed is low, a phenomenon typically known as turbo lag. The electrification of forced induction system, called electric forced induction system (EFIS), has emerged as a feasible solution and it also possesses numerous benefits depending on its topologies. This paper provides a comprehensive study on EFIS by investigating system level topologies, performance, various types of high-speed machines, power electronics, and control techniques. The advantages and disadvantages of existing electric forced induction system are summarized and the new challenges and opportunities are also introduced.
机译:强制感应技术(涡轮增压和增压)可以通过压缩入口空气充电来提高内燃机的性能,允许有效地生产全发动机功率。随着燃油经济性和温室气体排放标准的预计将在全球范围内更加严格,在乘用车和轻型卡车中使用强制感应发动机已经成为汽车行业的新必然趋势。然而,传统的强制感应系统遭受慢速瞬态响应,特别是当发动机速度低时,通常称为涡轮滞后的现象。强制感应系统的电气化,称为电力强制感应系统(EFIS),已成为可行的解决方案,并且取决于其拓扑也具有许多益处。本文通过调查系统级拓扑,性能,各种类型的高速机,电力电子设备和控制技术,对EFI提供了全面的研究。总结了现有电力强制感应系统的优缺点,并介绍了新的挑战和机遇。

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