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An experimental evaluation of the methodology proposed for the monitoring and certification of CO2 emissions from heavy-duty vehicles in Europe

机译:对建议用于监测和认证欧洲重型车辆二氧化碳排放量的方法学的实验评估

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摘要

The European Commission is preparing a new regulatory initiative for monitoring CO2 emissions and fuel consumption of Heavy-Duty Vehicles in Europe. The new methodology is based on a combination of component testing and computer simulation of the vehicles' fuel consumption. A study was launched aiming to demonstrate that the approach is adequately accurate and representative of the actual performance of vehicles. A series of experiments were conducted on two different trucks, a 40 t Euro VI long haul truck and an 18 t Euro V rigid truck. Measurements were performed both on the chassis dyno and on the road. Simulation software was used for simulating the tests. Its ability to capture vehicle performance and fuel consumption was assessed against the measured data. Simulation results closely matched those of the dyno tests with the final simulated fuel consumption deviating by about ±2-4% compared to the measured value. Over the tests performed on the road, the final fuel consumption laid within a ±3.5% from the measurement. Given the variability of the actual measurement (σ ≥ 2%), it is concluded that a future official vehicle certification scheme can be based on this approach and achieve both high representativeness, compared to the vehicle's actual performance, and high relevant, vehicle-to-vehicle, accuracy.
机译:欧盟委员会正在准备一项新的监管计划,以监控欧洲的重型车辆的二氧化碳排放量和燃料消耗。新方法基于组件测试和车辆油耗的计算机模拟相结合。开展了一项研究,旨在证明该方法足够准确,可以代表车辆的实际性能。在两辆不同的卡车上进行了一系列实验,这辆卡车是40吨Euro VI长途卡车和18吨Euro V刚性卡车。在底盘测功机和道路上均进行了测量。仿真软件用于仿真测试。根据测量数据评估了其捕获车辆性能和燃油消耗的能力。模拟结果与dyno测试的结果非常接近,最终的模拟燃油消耗量与测量值相差约±2-4%。在道路上进行的测试中,最终燃油消耗量为测量值的±3.5%。鉴于实际测量的可变性(σ≥2%),可以得出结论,未来的官方车辆认证计划可以基于此方法,并且与车辆的实际性能相比具有很高的代表性,并且与车辆之间的相关性也很高。 -车辆,准确性。

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