首页> 外文会议>DSCC2011;ASME dynamic systems and control conference;Bath/ASME symposium on fluid power and motion control >INTEGRATED POWERTRAIN CONTROL TO MEET LOW CO_2 EMISSIONS FOR A HYBRID DISTRIBUTION TRUCK WITH SCR-DENOX SYSTEM
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INTEGRATED POWERTRAIN CONTROL TO MEET LOW CO_2 EMISSIONS FOR A HYBRID DISTRIBUTION TRUCK WITH SCR-DENOX SYSTEM

机译:SCR-DENOX系统的混合动力总成控制技术,可满足混合配电卡车的低CO_2排放要求

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摘要

This article presents a cost-based optimization strategy that explicitly deals with the requirements for fuel consumption and emissions. Based on the Integrated Powertrain Control (IPC) ap proach, the overall powertrain performance is optimized by in tegrated energy and emission management. The potential of this strategy is demonstrated for a parallel hybrid diesel truck with a Selective Catalytic Reduction (SCR) de-NO_x system. New results are presented for a challenging city cycle; although the average power demand is low, IPC is able to keep the SCR catalyst tem perature relatively high. With this IPC approach, the CO_2-NO_x trade-off is optimized in a systematic way. It is demonstrated that CO_2 emissions and related operating costs are reduced by 3.5% or 24.9% NO_x emission reduction is achieved, depending on the applied IPC calibration.
机译:本文提出了一种基于成本的优化策略,该策略可明确满足燃料消耗和排放的要求。基于集成动力总成控制(IPC)方法,通过集成的能源和排放管理来优化整体动力总成性能。对于具有选择性催化还原(SCR)de-NO_x系统的并联混合动力柴油卡车,该策略的潜力得到了证明。提出了具有挑战性的城市周期的新结果;尽管平均功率需求较低,但是IPC能够将SCR催化剂温度保持在较高水平。通过这种IPC方法,可以系统地优化CO_2-NO_x的权衡。结果表明,根据所应用的IPC校准,CO_2排放量和相关的运营成本可减少3.5%或24.9%的NO_x排放量可减少。

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