Assessing the influence of boundary conditions, driving behavior and data analysis methods on real driving CO2 and NOx emissions

被引:57
作者
Varella, Roberto A. [1 ]
Faria, Marta V. [1 ]
Mendoza-Villafuerte, Pablo [2 ]
Baptista, Patricia C. [3 ]
Sousa, Luis [1 ]
Duarte, Goncalo O. [3 ,4 ]
机构
[1] Univ Lisbon, LAETA, IDMEC, Inst Super Tecn, Ave Rovisco Pais 1, P-1049001 Lisbon, Portugal
[2] CHN Ind, Via Puglia 35, I-10156 Turin, Italy
[3] Univ Lisbon, IN, Ctr Innovat Technol & Policy Res, Inst Super Tecn, Ave Rovisco Pais 1, P-1049001 Lisbon, Portugal
[4] ISEL, ADEM, Dept Mech Engn, Rua Conselheiro Emidio Navarro 1, P-1959007 Lisbon, Portugal
关键词
Real driving emissions; Portable emission measurement systems; Fuel use and emissions; Testing boundary conditions; Data analysis methods; POLLUTANT EMISSIONS; FUEL CONSUMPTION; PEMS; CARS;
D O I
10.1016/j.scitotenv.2018.12.053
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The need to verify vehicle emissions in real world operation led to the implementation of Real Driving Emissions (RDE) test procedures, effective since September 2017 for new Euro 6 cars following the Commission Regulation (EU) 2016/427, which defines the RDE test conditions and data analysis methods to allow representative results. Main factors addressed by the regulation include the share of driving operation, ambient temperature range, altitude and elevation difference. However, RDE is still debatable since not only boundary conditions but also the evaluation methods and trip selection are being discussed together with a carbon dioxide (CO2) regulation, which is planned to be implemented in the short term. Thus, this work focuses on analyzing the effect of different data measurement and analysis methods (i.e. cold operation, road grade, trip selection and driving style) on CO2 and nitrogen oxides (NOx) emissions based on 13 RDE tests performed in the Lisbon Metropolitan Area, Portugal. The tests were conducted by 2 drivers using 5 vehicles. Each driver performed 2 trips per vehicle, one in normal driving and other in aggressive driving. A Portable Emissions Measurement System (PEMS) was used to collect 1 Hz data, which was compared and analyzed using the European Commission (EC) proposed method for RDE tests. Results show the effects of each parameter such as average difference between drivers (7% in CO2 and 55% in NOx emissions) and between aggressive and normal driving. For road grade, big oscillations happen during the slope profile, which impacts emissions during all trips. Considering cold-operation, CO2 and NO emissions are, on average, similar to 25% and 55% higher, respectively, than in hot-operation. These results highlight the need for deeper studies on these factors to assure that RDE tests evolve to a more established certification procedure than laboratorial certifications. (C) 2018 Elsevier BM. All rights reserved.
引用
收藏
页码:879 / 894
页数:16
相关论文
共 39 条
[31]   Real world CO2 and NOx emissions from 149 Euro 5 and 6 diesel, gasoline and hybrid passenger cars [J].
O'Driscoll, Rosalind ;
Stettler, Marc E. J. ;
Molden, Nick ;
Oxley, Tim ;
ApSimon, Helen M. .
SCIENCE OF THE TOTAL ENVIRONMENT, 2018, 621 :282-290
[32]   Effect of low ambient temperature on fuel consumption and pollutant and CO2 emissions of hybrid electric vehicles in real-world conditions [J].
Alvarez, Robert ;
Weilenmann, Martin .
FUEL, 2012, 97 :119-124
[33]   Real Driving Emissions-Conception of a Data-Driven Calibration Methodology for Hybrid Powertrains Combining Statistical Analysis and Virtual Calibration Platforms [J].
Krysmon, Sascha ;
Dorscheidt, Frank ;
Classen, Johannes ;
Duzgun, Marc ;
Pischinger, Stefan .
ENERGIES, 2021, 14 (16)
[34]   Effect of hybrid system battery performance on determining CO2 emissions of hybrid electric vehicles in real-world conditions [J].
Alvarez, Robert ;
Schlienger, Peter ;
Weilenmann, Martin .
ENERGY POLICY, 2010, 38 (11) :6919-6925
[35]   Effects of resistive loads and tire inflation pressure on tire power losses and CO2 emissions in real-world conditions [J].
Sina, Naser ;
Nasiri, Sayyad ;
Karkhaneh, Vahid .
APPLIED ENERGY, 2015, 157 :974-983
[36]   Real driving energy consumption and CO2 & pollutant emission characteristics of a parallel plug-in hybrid electric vehicle under different propulsion modes [J].
Wang, Yachao ;
Wen, Yi ;
Zhu, Qinggong ;
Luo, Jiaxin ;
Yang, Zhengjun ;
Su, Sheng ;
Wang, Xin ;
Hao, Lijun ;
Tan, Jianwei ;
Yin, Hang ;
Ge, Yunshan .
ENERGY, 2022, 244
[37]   A study on the CO2 and NOx emissions performance of Euro 6 diesel vehicles under various chassis dynamometer and on-road conditions including latest regulatory provisions [J].
Triantafyllopoulos, Georgios ;
Dimaratos, Athanasios ;
Ntziachristos, Leonidas ;
Bernard, Yoann ;
Dornoff, Jan ;
Samaras, Zissis .
SCIENCE OF THE TOTAL ENVIRONMENT, 2019, 666 :337-346
[38]   Investigation of Heavy-Duty Vehicle Chassis Dynamometer Fuel Consumption and CO2 Emissions Based on a Binning-Reconstruction Model Using Real-Road Data [J].
Ren, Shuojin ;
Li, Tengteng ;
Li, Gang ;
Liu, Xiaofei ;
Liu, Haoye ;
Wang, Xiaowei ;
Gao, Dongzhi ;
Liu, Zhiwei .
ATMOSPHERE, 2023, 14 (03)
[39]   Learning from the real-world: Insights on light-vehicle efficiency and CO2 emissions from long-term on-board fuel and energy consumption data collection [J].
Tansini, Alessandro ;
Marin, Andres L. ;
Suarez, Jaime ;
Aguirre, Nestor F. ;
Fontaras, Georgios .
ENERGY CONVERSION AND MANAGEMENT, 2025, 335