Development on an Acquisition and Analysis System for Indicator Diagram of Piston Engine

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Abstract:

An acquisition and analysis system for indicator diagram (ID) of piston engine is developed for monitoring the cylinder pressure in engine development. The hardware component of the data acquisition system is introduced. The method of the determination of the TDC, the method of filtering the interference signal of ID and the method of implementation with Visual C++ are presented. The system can provide ID online through the experiment on Honda 125 engine. It can directly and conveniently display the information about combustion. Therefore it has a high potential value in engineering applications.

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268-272

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December 2013

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Xueliang He, Susong Li. Combustion Science [M]. Bei Jing: Machinery Industry Press, 1990: 372-396.

Google Scholar

[2] Fujun Zhang, Yebao Sun, WANG Ge, etc. Development on an Acquisition and Analysis system for In-cylinder Working Process of Gasoline Engine [J]. Chinese Internal Combustion Engine Engineering, 2000, 3: 32-36.

Google Scholar

[3] Yumei Li, Chunrong Hua, YAN Bing, etc. Fast Algorithms for Filtering out the Interfering Signal in Indicator Diagram [J]. Chinese Internal Combustion Engine Engineering, 2005, 26 (2): 69-72.

Google Scholar

[4] Shaoxi Shi, Hongzhi Sheng. Three Digital Filtering Methods for Engine Indicator Diagram Processing [J]. Transaction of CSICE, 1986, 4 (4): 289-304.

Google Scholar

[5] Zhenggang Liu, Wei Yan. The Spectrum Property and Processing of pressure Indicator Graph [J]. Small Internal Combustion Engine and Motorcycle, 2002, 5(31): 18-20.

Google Scholar

[6] Hai Yang, Minhua Deng. Recent Research and Development of the Internal Combustion Engine's Indicator Diagram at Home and Abroad [J]. Internal Combustion Engine, 2005, 6: 6-8.

Google Scholar

[7] Olivier Boubal. Knock Detection in Automobile Engines [J]. IEEE Instrumentation & Measurement Magazine, 2000, 3(3): 24-28.

Google Scholar

[8] Hudson C, Gao X, Stone R. Knock Measurement for Fuel Evaluation in Spark Ignition Engines [J]. Fuel, 2001, (80): 395-407.

DOI: 10.1016/s0016-2361(00)00080-6

Google Scholar

[9] Zhengtai Yang. Engine testing technology [M]. Hang Zhou: Zhejiang University Press, (1986).

Google Scholar

[10] Haolong Liu, Dong Tang, Lu Lingya, etc. An Investigation on the Determining of TDC by Compressing Line Method [J]. Journal of Agricultural Mechanization Research, 2005, 3: 109-112.

Google Scholar

[11] Jingfang Zhong, Boyuan Fan, CHENG Changqi. The Determination of Engine TDC by Thermodynamic Simulating Calculation of the Motoring Cycles [J]. Chinese Internal Combustion Engine Engineering, 1989, 3: 72-75.

Google Scholar

[12] Yuhua Chen. A Thermodynamic Method for the Determination of the TDC Position on Indicator Diagrams [J]. Journal of Southwest Jiaotong University, 1988, 3: 61-67.

Google Scholar