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The Importance of HEV Fuel Economy and Two Research Gaps Preventing Real World Implementation of Optimal Energy Management

机译:HEV燃料经济性的重要性及两项研究差距阻止了现实世界实施最优能源管理

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Optimal energy management of hybrid electric vehicles has previously been shown to increase fuel economy (FE) by approximately 20% thus reducing dependence on foreign oil, reducing greenhouse gas (GHG) emissions, and reducing Carbon Monoxide (CO) and Mono Nitrogen Oxide (NO_x) emissions. This demonstrated FE increase is a critical technology to be implemented in the real world as Hybrid Electric Vehicles (HEVs) rise in production and consumer popularity. This review identifies two research gaps preventing optimal energy management of hybrid electric vehicles from being implemented in the real world: sensor and signal technology and prediction scope and error impacts. Sensor and signal technology is required for the vehicle to understand and respond to its environment; information such as chosen route, speed limit, stop light locations, traffic, and weather needs to be communicated to the vehicle. Since optimal control requires accurate prediction of the vehicle environment and drive cycle, prediction scope and error impact analysis is needed to understand the required accuracy of sensor and signal information received by the vehicle as well as the accuracy of the optimal control computed. This review presents the current state of research and solutions in development for each of these research gaps. Once these research gaps have been filled, HEVs may have the potential to substantially increase the FE standard and remove ICE vehicles as the leading consumer of petroleum and leading contributor of GHG, CO, and NO_x emissions.
机译:Hybrid Electric车辆的最佳能量管理先前已被证明将燃料经济性(Fe)提高约20%,从而减少对外国油的依赖性,减少温室气体(GHG)排放和还原一氧化碳(CO)和单氮氧化物(NO_X )排放。这展示的Fe增加是在现实世界中实施的一个关键技术,作为混合动力电动汽车(HEV)的生产和消费者普及。本综述标识了两项研究差距,防止了混合电动车的最佳能量管理在现实世界中实施:传感器和信号技术以及预测范围和错误影响。车辆理解和响应其环境需要传感器和信号技术;所选路线,速度限制,停止光位置,流量和天气等信息需要传送到车辆。由于最佳控制需要准确地预测车辆环境和驱动周期,因此需要预测范围和错误影响分析,以了解车辆接收的传感器和信号信息的所需精度以及所计算的最佳控制的准确性。本综述列举了目前对这些研究差距开发的现状和解决方案。一旦填补了这些研究差距,HEV可能有可能大大增加FE标准,并将冰车作为石油的主要消费者以及GHG,CO和NO_X排放的主要贡献者。

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