Research of Comparison Circular Interpolation on WINCE

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Abstract:

Up to now lots of CNC system used traditional DOS to realize real time control by hardware interrupt programming. To make computer numerical control system flexible and open can meet requirements of higher real-time. This paper used ARM9 processor S3C2410A with the RISC system of SAMSUNG Company, and realized precise interpolation of NC interpolation by the way of software on EVC platform with the aid of WinCE OS. Coupled with the motor drive module, it can achieve a simple NC function of four quadrant arc interpolation will be realized by programming used by point-by-point comparison method.

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Periodical:

Advanced Materials Research (Volumes 602-604)

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2255-2258

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December 2012

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] Aizhen Yan, Hongsheng Li. Numerical control principle and system [M] . Beijing: Mechanical Industry Press, (1999)

Google Scholar

[2] Jian Fan, Jianfeng Pan, Jianhua Bai. Research on real time control of full software CNC system [J] : Manufacturing Technology & machine tool,2007(5)

Google Scholar

[3] Bing Wang, Cunbin Li, Pen Chen. EVC advanced programming and application development [M] . Beijing: China Water Power Press, (2005)

Google Scholar

[4] Yulin Zhou, Yang Ning, Guiqiang Lu. Windows CE.net kernel customization and application [M] . Beijing: Publishing House of electronics industry, (2005)

Google Scholar

[5] Pu Wei, Taisheng Chen. Visual C++ general development of Golden [M] . Beijing: Publishing House of electronics industry, 2008.6

Google Scholar

[6] Tsinghua Bai. Achievement of Digital integral arc interpolation on VC [J] . Guangzhou: Machine Tool & hydraulics, 2006(7)

Google Scholar

[7] Ye Bosheng. CNC system principle, programming and operation [M] . Wuhan: Huazhong University of science and Technology Press, (1999)

Google Scholar

[8] Tang Zhibin. NC high speed and high precision motion control method research [J]. Manufacturing technology & machine tool, 2003 (3)

Google Scholar