A Study on Gray Relational Analysis of Many Factor Weights in Tobacco Leaves Classification

Author:

Mao Peng Jun1,Liu Lu2,Wang Jun1,Hu Chun Yan3

Affiliation:

1. Henan University of Science and Technology

2. China Aviation Lithium Battery CO. LTD.

3. Luoyang Tractor Institute Co., Ltd.

Abstract

For the nine characteristic factors of tobacco leaf grading standards have different degree of influence on final grading results and lack of objective evaluation method, in this paper, we applied the gray relational analysis method to determine the weight of tobacco leaf factors in every grade, which calculate the gray relational analysis of nine characteristic factors: such as hue, lightness value, chroma, length, leaf structure, waste, oil, maturity and body. The gray relation was normalized to get the weight of the nine factors in tobacco leaf classification. By contrasted with the subjective evaluation of five experts in tobacco field, the calculation results are basically consistent with the experts’ recommendation. It illustrates that the application of Grey relational method to calculate influence ability of flue-cured tobacco grading factors is feasible. This method eliminates the subjectivity of the weight of each factor and can make the results more realistic.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference6 articles.

1. S.F. Liu, Y.G. Dang and Z.G. Fang. Grey System Theory and Application [M]. Science Press, Beijing, (2005).

2. Y.N. Wang. Grey Sequence Relational Analysis [J]. Journal of Huazhong University of Science &Technology, (2005).

3. Y.G. Dang, S.F. Liu and X.L. Ping. The Study of Grey Synthetic Decision Appraisal Model, Proceedings of the 32nd International Conference on Computers & Industrial Engineering, pp.542-547, (2003).

4. Y.G. Dang and S.F. Liu. The GM Model that x (n) be Taken as Initial Value, Kybernetes: The International Journal of Systems & Cybernetics, Vol. 33, No. 2: pp.247-254, (2004).

5. S.F. Liu. Emergence and Development and Forward Trends of Grey Systems Theory, Proceedings of the 32nd International Conference on Computers & Industrial Engineering, pp.526-531, (2003).

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