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http://dx.doi.org/10.9726/kspse.2017.21.6.094

A Study on the Developments of Emission Correction Formula and Emission Characteristics of Greenhouse Gas by 5-Cycle Mode  

Park, Jin-Sung (Korea Petroleum Quality & Distribution Authority)
Lim, Jae-Hyuk (Korea Petroleum Quality & Distribution Authority)
Lee, Min-Ho (Korea Petroleum Quality & Distribution Authority)
Kim, Ki-Ho (Korea Petroleum Quality & Distribution Authority)
Publication Information
Journal of Power System Engineering / v.21, no.6, 2017 , pp. 94-100 More about this Journal
Abstract
Due to the environmental problems caused by the greenhouse effect, regulation of $CO_2$ emissions is getting stronger day by day. In paricular, regulations of automobiles $CO_2$ emissions are being strengthen. However, existing $CO_2$ measurement methods do not reflect the environment and operating conditions on actual roads. Emissions of $CO_2$ can be increased by various conditions such as environmental condition(temperature and humidity) and driver's tendency(aggressive and passive). Therefore it is necessary to reflect the conditions of various actual roads such as 5-cycle test method on behalf of the existing $CO_2$ emission measurement method. The 5-cycle measurement method has five test modes; FTP-75, HWFET, US06, SC03, Cold FTP-75. The method reflects the following three environments and operating conditions as compared to conventional method; Using heater at low temperature, Aggressive driving such as rapid acceleration or deceleration, Using air conditioner at high temperature. Because of these various conditions of each test cycle, the 5-cycle method can reflect actual environments and operating conditions. This paper attempt to analyze $CO_2$ emission characteristics based on the results measured through the 5-cycle mode and develop the correction formula that can derive the results of the 5-cycle test method using existing test methods. As a result, the developed correction formula is expected to reduce $CO_2$ emissions and cut down expense for testing 5-cycle mode.
Keywords
$CO_2$ emission test; FTP-75 mode; HWFET mode; US06 mode; SC03 mode;
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