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Characterizing driving patterns for Zhuhai for traffic emissions estimation

机译:表征珠海市的交通排放估算驾驶模式

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摘要

Zhuhai, a relatively less developed city on the western coast of the Pearl River Delta (PRD) of China, is planning to undergo major development in coming years. A Hong Kong-Zhuhai-Macao Bridge project has been approved by the Central Government of China. The project will have great impact on the driving pattern and vehicular emissions to the city. This baseline study collected speed-time data of two instrumented private cars in morning and evening periods, as well as a daytime nonpeak period of >10 consecutive days in the spring and winter of 2003. The authors used the microwave speed sensor and global positioning system installed in the instrumented cars and used car-chasing technique to perform the data collection. They used the statistical package SPSS to assess the consistency, as well as to evaluate the variability of the data. Nine parameters, namely, average speed, average running speed, average acceleration rate, average deceleration rate, mean length of a driving period, time proportions of driving modes, average number of acceleration-deceleration changes, root mean square acceleration, and positive acceleration kinetic energy are calculated to represent the driving characteristics. A driving cycle for private cars was developed. If emission tests were conducted using the Zhuhai driving cycle, the level of vehicle emissions measured is likely to be in between that of the Federal Test Procedure (FTP) cycle and the Melbourne Peak cycle.
机译:珠海是中国珠江三角洲西部沿海相对欠发达的城市,正计划在未来几年内进行重大发展。中央政府批准了港珠澳大桥项目。该项目将对城市的驾驶方式和车辆排放产生巨大影响。这项基线研究收集了早晚两辆装有仪表的私家车的速度时间数据,以及在2003年春季和冬季连续10天的白天非高峰时段。作者使用了微波速度传感器和全球定位系统安装在有轨电车上,并使用购车技术进行数据收集。他们使用统计软件包SPSS来评估一致性,以及评估数据的可变性。九个参数,即平均速度,平均行驶速度,平均加速度,平均减速度,平均驾驶时间,驾驶模式的时间比例,平均加减速变化次数,均方根加速度和正加速动力学计算能量来表示驾驶特性。开发了私家车的驾驶循环。如果使用珠海驾驶周期进行排放测试,则测得的车辆排放水平很可能介于联邦测试程序(FTP)周期和墨尔本高峰周期之间。

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