首页> 外文会议>ASME Internal Combustion Engine Division technical conference >DEVELOPMENT OF A EURO VI DIESEL ENGINE SYSTEM OPTIMISED TO DELIVER FUEL ECONOMY AND EMISSIONS IMPROVEMENTS ON A SERIES HYBRID CITY BUS APPLICATION FOR ONE OF THE WORLD'S BUSIEST BUS NETWORKS
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DEVELOPMENT OF A EURO VI DIESEL ENGINE SYSTEM OPTIMISED TO DELIVER FUEL ECONOMY AND EMISSIONS IMPROVEMENTS ON A SERIES HYBRID CITY BUS APPLICATION FOR ONE OF THE WORLD'S BUSIEST BUS NETWORKS

机译:研发优化的欧六柴油发动机系统,以实现燃油经济性和排放改进,在世界上最繁忙的公交网络之一的混合型城市客车上的应用

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Ongoing efforts to reduce CO2 and other pollutant tail pipe emissions have led to escalated demand for diesel-electric hybrid bus powertrains in Europe, similar to the trend in passenger car markets. This is fuelled by public expectations and initiatives by various European governments to reward bus fleet operators for reduced in-city emissions and noise thus improving air quality and wellbeing of the general population. This paper describes the engineering efforts that developed a Euro Ⅵ certified diesel engine system, catering for series hybrids operating under 'charge-depleting' as well as 'load following' battery management strategies. The development team delivered improved fuel economy whilst dealing with requirements around legislation, unique customer duty cycles and engine mechanical robustness. Focus was placed on capturing requirements from a diverse range of sources and harmonising them to develop a technical solution fit for purpose in day to day operation that differs from validation cycles and standard drivetrain operation. In order to deliver a field-ready solution, application specific tuning and validation processes had to be defined and developed. This was achieved through close coordination with the European bus OEMs and their chosen hybrid system suppliers. Six-sigma tools were used to highlight key expectations and drive technical solutions. At a system level the focus was on OBD reliability, exhaust after-treatment management, controls functionality, hardware durability and tail pipe emissions. Performance targets including the number of start-stops per hour, idle management and engine speed-torque ramp rates were defined. Drive cycle simulations helped define optimal engine and hybrid system operating strategies followed by physical testing to further optimise these running points. Vehicle-level validation was completed through field testing, specific European bus test cycles, as well as under exceptional scenarios encountered in real world use. This exercise was designed to find and solve interface and OBD issues. Integration challenges in the areas of engine speed-torque control, diesel paniculate filter management and HVAC control were addressed. The outcome is the release of a bespoke Euro Ⅵ diesel engine package, which enabled the hybrid bus system to exceed customer expectations. This integrated system operates on a set of optimised parameters delivering efficient sub system behaviour including aftertreatment management, engine protection and operating state control. It handles the full range of real-world vehicle operation with improved fuel economy, frequent start/stop operation and enhanced driveability.
机译:不断减少二氧化碳和其他污染物尾管排放的努力导致了欧洲对柴油-电动混合动力总成动力总成的需求上升,这与乘用车市场的趋势类似。欧洲各国政府对公众的期望和倡议,以奖励公交车队运营商减少城市排放物和噪音,从而改善空气质量和普通民众的福利,助长了这一点。本文介绍了开发通过欧盟Ⅵ级认证的柴油机系统的工程工作,该系统适用于在“电量耗尽”和“负荷跟随”电池管理策略下运行的串联混合动力汽车。开发团队提供了改进的燃油经济性,同时满足了有关法规,独特的客户工作周期和发动机机械强度的要求。重点放在从各种来源获取需求并协调它们,以开发适合于日常运行目的的技术解决方案,该解决方案不同于验证周期和标准动力传动系统的运行。为了提供现场可用的解决方案,必须定义和开发特定于应用程序的调整和验证过程。这是通过与欧洲公交车原始设备制造商及其所选的混合动力系统供应商进行密切协调而实现的。六西格玛工具用于突出关键期望并推动技术解决方案。在系统级别,重点是OBD可靠性,排气后处理管理,控制功能,硬件耐用性和尾管排放。确定了性能目标,包括每小时的起停次数,怠速管理和发动机转速-转矩斜坡率。驾驶循环模拟有助于定义最佳的发动机和混合动力系统运行策略,然后进行物理测试以进一步优化这些运行点。通过现场测试,特定的欧洲公交车测试周期以及在实际使用中遇到的特殊情况,完成了车辆级别的验证。本练习旨在查找和解决界面和OBD问题。解决了发动机转速-转矩控制,柴油颗粒过滤器管理和HVAC控制领域的集成挑战。结果是定制的欧Ⅵ柴油发动机套件的发布,使混合动力客车系统超出了客户的期望。该集成系统在一组优化的参数上运行,可提供有效的子系统行为,包括后处理管理,发动机保护和运行状态控制。它可以改善燃油经济性,频繁的起/停操作和增强的驾驶性能,从而处理现实世界中的所有车辆操作。

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