Wiring of Cables Based on Virtual Prototyping

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Abstract:

Wiring of cables is very important in the design of electro-mechanical products. Whereas, there is not an effectual virtual wiring method for the moment. Aimed at the problem, a virtual wiring is expatiated in this paper. Virtual layout design is achieved based on human-computer interaction, which is verified by virtual assembling. Geometrical modeling of cables, the precision of which is quite high, is established based on energy-optimized method. The characteristic of virtual assembling to the products, which make up of cables and other parts, is discussed. Especially, the assemble technique programming and transformation simulating of cables are studied. In the end, the wiring is actualized on a product, intention to validate the feasibility of the method.

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525-529

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June 2012

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] Hisup Park, Soo Hong Lee, Mark E Cutkojky. Computational support concurrent engineering of cable harness[R]. CDR Technical Report,(1992).

Google Scholar

[2] A.B. Conru, A genetic approach to the cable harness routing problem, in: Proceedings of the IEEE Conference on Evolutionary Computation, Vol. 1, Orlando, USA, (1994).

DOI: 10.1109/icec.1994.350016

Google Scholar

[3] E. Hergenrother and P. Dahne. Real-time virtual cables based on kinematic simulation. In Proceedings of the WSCG 2000, (2000).

Google Scholar

[4] Loock and E. Schomer. A Virtual Environment for Interactive Assembly Simulation: From Rigid Bodies to Deformable Cables. www. cister. com.

Google Scholar

[5] WuYinfeng, Wu Zhaohua. 3D Auto-routing Technology of Electronic Equipment [J]. TELEVISION TECHNIQUE, 2005(2): 76-81.

Google Scholar

[6] Gaoji Kaida, Liu Jianhua. Research on Cable Harness Modeling and Assembly Planning in Virtual Environment. JOURNAL OF SYSTEM SIMULATION, Vol. 17, No. 4, (2005).

Google Scholar

[7] Celniker G. and Gossard D. Deformable curve and surface finite-elements for free-form shape design. ACM Computer Graphics, 1991, Vol. 25(4): 257-266.

DOI: 10.1145/127719.122746

Google Scholar

[8] Qian Xuesen, Yu Jingyuan, Dai Ruwei. A New Scientific Domain: on-Limits and Complex System and the Theory[J]. NATURE, 1990, 13(1): 3-10.

Google Scholar

[9] Wang Fengjun. Virtual Wiring and Installing Simulation of Cables[D]. Mianyang, CAEP, (2006).

Google Scholar