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A comparison of the operating envelopes of diesel-fueled truck engines and hybrid electric bus engines to the Federal Testing Procedure cycle.

机译:将柴油卡车发动机和混合动力电动客车发动机的运行范围与联邦测试程序周期进行了比较。

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Recent chassis and on-road testing of hybrid electric buses (HEBs) performed by West Virginia University demonstrated the potential of hybrid technology to be significantly fuel-efficient and reduce regulated emissions and greenhouse gas output compared to buses with conventional drivetrains.; All heavy-duty engines, including the engines in HEBs, need to be certified through the Federal Testing Procedure (FTP) prescribed by the United States Environmental Protection Agency. The operation of series HEBs with engine-generator units does not follow the behavior of the FTP, which is transient in nature. It was evident that, unlike conventional buses, HEBs were designed to operate over a limited range of the engine's torque curve to ensure high engine efficiency. In the case of series hybrid electric vehicles (HEVs), additional power is supplied by energy stored in batteries through a motor-generator when necessary.; This study presents evidence for a need of an alternative engine certification procedure specifically written for these new buses. Such a procedure must focus on the testing of the hybrid bus engine on cycles that are representative of their engine speed and engine torque operating range.; In-use series hybrid electric bus engine torque and speed envelopes were analyzed and compared to conventional bus engine operation and the FTP certification cycle. From these results, it was evident that hybrid bus engines operated with substantially less aggressive transient behavior than were obtained by following the FTP. Since aggressive engine operation contributes directly to an increased formation of particulate matter and carbon monoxide (CO) in diesel engines, actual emissions from in-use hybrid electric bus engines are better represented when operating the engine on steady state cycles. Thus new duty-cycles must be designed to meet standards of the hybrid bus' life operation.
机译:西弗吉尼亚大学最近对混合动力公交车(HEB)进行的底盘和道路测试表明,与具有传统动力传动系统的公交车相比,混合动力技术具有显着的燃油效率并减少了规定的排放量和温室气体排放的潜力。所有重型发动机,包括HEB中的发动机,都需要通过美国环境保护局规定的联邦测试程序(FTP)进行认证。带有发动机发电机单元的HEB系列变频器的运行不遵循FTP的行为,该行为本质上是瞬态的。显然,与传统的公交车不同,HEBs被设计为在发动机扭矩曲线的有限范围内运行,以确保高发动机效率。对于串联混合动力电动汽车(HEV),必要时,通过电动发电机通过电池中存储的能量提供额外的动力。这项研究提供了证据,证明需要专门为这些新客车编写的替代发动机认证程序。这种程序必须专注于在代表其发动机转速和发动机扭矩工作范围的循环上测试混合动力客车发动机。分析了使用中的混合动力电动巴士发动机的扭矩和速度范围,并将其与传统的巴士发动机操作和FTP认证周期进行了比较。从这些结果可以看出,混合动力巴士发动机的主动性瞬态行为远低于通过FTP获得的行为。由于激进的发动机运行直接导致柴油发动机中颗粒物和一氧化碳(CO)的形成增加,因此,当在稳态循环下运行发动机时,使用中的混合动力电动客车发动机的实际排放会得到更好的体现。因此,必须设计新的占空比,以满足混合动力公交车的使用寿命。

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