Construction of Reliability Evaluation Model of Cigarette Quality Supervision Measuring Instrument Based on Random Forest Algorithm

Author:

Wang Jia1,Wang Xiayi1,lv Xuan1,Li Zijuan1,Zhao Haiyang1,Wang Fang1,Li Jixiang2,Wang Shiming2

Affiliation:

1. Zhangjiakou Cigarette Factory Co., Ltd ., Zhangjiakou , Hebei , , China .

2. College of Electronic Information and Automation , Tianjin University of Science and Technology , Tianjin , , China .

Abstract

Abstract This paper combines the cigarette quality supervision measurement project, summarizes the key instruments for cigarette quality supervision, constructs the reliability evaluation model of cigarette quality supervision measurement instruments, adopts the random forest method and carries out model optimization so as to solve the weights of quality evaluation indexes of cigarette quality supervision measurement instruments. The QTM comprehensive test bench is selected to measure the quality and circumference of the traceability comparison stick of cigarette physical inspection equipment and combined with the Random Forest optimization algorithm to analyze the impact of measurement repeatability on the moisture content of cigarettes. Using the normalized deviation evaluation method, we can compare the consistency of the detection results of the evaluation model of this paper with the detection results of the parent company. It is analyzed that the maximum permissible error of cigarette circumference is ±0.05, and the maximum permissible deviation of comparison D max is ±0.06. The circumference deviation of sample A is 0.04<0.06, the sample is qualified, and it is consistent with the testing results of the parent company.

Publisher

Walter de Gruyter GmbH

Reference13 articles.

1. JOHN, & PARKER. (2012). Greater focus on quality obvious for cis cigarette trade. Tobacco international, 12(1), 36-39.

2. Zou, Q., Zhang, T., Zhao, Y., Chen, R., & Feng, H. (2021). Effect of cut tobacco size and distribution on critical cigarette quality characteristics of “slim cigarette” processing technology. Journal of Physics Conference Series, 1748(6), 062043.

3. Barhdadi, S., Moens, G., Canfyn, M., Vanhee, C., Desmedt, B., & Courselle, P., et al. (2021). Impact of the revised european tobacco product directive on the quality of e-cigarette refill liquids in belgium (vol 23, pg 227, 2021). Nicotine & Tobacco Research(1), 23.

4. Xiaoxi, S. I., Fengmei, Z., Le, Z., Jianyun, Y., Ruizhi, Z., & Hongbo, W., et al. (2018). Particle size distribution of aerosols in mainstream smoke of cigarettes with different moisture content in cut tobacco. Acta Tabacaria Sinica.

5. Song, D. J., Feng, S. X., Feng, L. Y., Jie, L. H., & Shan, A. L. D. (2008). Effects of cut tobacco size distributions on physical characteristics of cigarette. Tobacco Science & Technology.

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