首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Investigating the effect of engine noise on power management strategy of a hybrid electric vehicle
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Investigating the effect of engine noise on power management strategy of a hybrid electric vehicle

机译:调查发动机噪声对混合动力电动汽车电源管理策略的影响

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摘要

Hybrid electric vehicles (HEVs) have been developed as a promising way to decrease the fuel consumption and emissions of conventional vehicles. Although the noise emission of HEVs is generally lower than that of conventional vehicles, it is still an issue, especially in urban transportation. In this paper, a power management strategy is developed to minimize the annoying noise of the engine for an HEV. This is a modified version of the strategy that was originally established based on the speed ratio of continuously variable transmission (CVT) as the control parameter (CVT-based strategy). The engine combustion noise is assessed using the experimental data of the in-cylinder pressure. Also, the engine brake specific fuel consumption (bsfc) is defined from the experiments. The bsfc and noise data are implemented in the power management strategy. The proposed strategy offers a better performance in terms of reducing engine noise and fuel consumption in comparison with an electric assist control strategy (EACS). On the other hand, the proposed strategy results in a lower level of engine noise than the original CVT-based strategy at the expense of slightly increasing the fuel consumption. For instance, the noise level (dB) in an urban dynamometer driving cycle using the proposed strategy is 49% lower than the case of CVT-based strategy, while the vehicle FC is about 1.1% more than the CVT-based case.
机译:混合动力电动汽车(HEV)已成为减少传统车辆燃料消耗和排放的有希望的途径。虽然HEV的噪音通常低于传统车辆,但它仍然是一个问题,尤其是城市交通。在本文中,开发了一种电力管理策略,以最大限度地减少发动机的令人讨厌的噪音。这是基于作为控制参数(基于CVT的策略)的连续变速器(CVT)的速比最初建立的策略的修改版本。使用缸内压力的实验数据评估发动机燃烧噪声。此外,发动机制动特定的燃料消耗(BSFC)由实验定义。 BSFC和噪声数据在电源管理策略中实现。拟议的策略在与电气辅助控制策略(EAC)相比,在降低发动机噪声和燃料消耗方面提供了更好的性能。另一方面,所提出的策略导致发动机噪声的较低水平,而不是基于原始的基于CVT的策略,以略微增加燃料消耗。例如,使用所提出的策略的城市测力计驾驶循环中的噪声水平(DB)比基于CVT的策略的情况低49%,而车辆FC比基于CVT的情况大约为1.1%。

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