ECU引擎重配(KTM 390)

Sunil Sopnur, Vedang Mahurkar, Navin Kodam, Omkar K. Shinde
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引用次数: 0

摘要

汽车工业中的现代发动机都是借助于发动机管理单元(EMU)进行数字化控制,并借助于发动机动态仪进行手动编程,以获得所需的功率和效率。利用发动机测功机和动车组对某四缸发动机的发动机图进行算法调整,利用空燃比算法获得发动机转速和油门位置,以获得所需的性能。初步的自动调校结果与原厂调校的动车组功率输出曲线相当。在较低的速度数据更改是必需的,功率输出结果略低于在工厂调整的发动机。在更好的性能和轻微的改进,发动机效率可以发现更大的速度。将发动机的调校提高到一个非常高的水平,可以等同于原始设备制造商(OEM),可以成功地获得发动机的性能,从而节省了时间并使发动机调校过程保持一致
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Remapping of ECU Engine (KTM 390)
Modern engines in automobile industry are controlled digitally with the help of engine management unit (EMU) which is programmed with the help of engine dyno manually to get the desired power, efficiency. Emissions Engine map of a four cylinder engine is tuned with the help of algorithm by using engine dynamometer as well as EMU, engine speed and throttle position is obtained by algorithm of air fuel ratio to obtain the required performance. Results of Preliminary automated tuning produce output curves of power which is equivalent to those of the OEM tuned EMU. At lower speed data altering is required and power outputs results are slightly less than the engine which are tuned in factory. At better performance and slight improvements in the engine efficiency can be found greater speeds. The tuning of engine to a very higher level which can be equivalent to Original Equipment Manufacturer (OEM) the engine performance can be successfully obtained which saves time and make engine tuning process consistent
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