CO₂ emissions correction of light-duty vehicles based on an energy deviation analysis method

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초록

In present study, a total of 3 types of light-duty vehicles were tested for 7 types of driving modes by using a vehicle dynamics-based simulation method. Deviations between the target and actual test vehicle speed and inaccurate chassis dynamometer road load settings are selected as the two main factors affecting the CO₂ emission measurement test. 126 cases of simulations were conducted to analyze the effects of the deviation between the target and actual test vehicle speed on CO₂ emissions and 63 cases of simulation were conducted to analyze the effectiveness of inaccurate road load test conditions on CO₂ emissions. Then, the CO₂ correlation method proposed by World Forum for Harmonization of Vehicle Regulations (WP.29, UN) was applied for simulated results in original simulation cases, and a correction to performance was validated by comparative analysis. From the simulation results, it is revealed that velocity and road load deviation are related to distinct changes in fuel efficiency and CO₂ emission rates of test vehicles. Also, it is revealed that CO₂ correction method show good performance to reduce the relative error lower than 2% in all test cases.

키워드

Vehicle dynamics-based simulationWork deviationWinans coefficientCO₂ emissionCO₂ correction methodFUEL CONSUMPTIONPASSENGER CARSECONOMYSIMULATIONSTRATEGIESSTANDARDREDUCETESTSNEDC
제목
CO₂ emissions correction of light-duty vehicles based on an energy deviation analysis method
저자
Oh, YunjungKwon, Sang IlPark, Sungwook
DOI
10.1016/j.trd.2017.08.013
발행일
2017-10
유형
Article
저널명
Transportation Research Part D: Transport and Environment
56
페이지
286 ~ 304