XI Hongjie, SONG Lijun, DENG Yuming, et al. Shelf Life Prediction of UHT Milk Packaging Based on BP Neural Network[J]. Science and Technology of Food Industry, 2024, 45(4): 205−210. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2023020107.
Citation: XI Hongjie, SONG Lijun, DENG Yuming, et al. Shelf Life Prediction of UHT Milk Packaging Based on BP Neural Network[J]. Science and Technology of Food Industry, 2024, 45(4): 205−210. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2023020107.

Shelf Life Prediction of UHT Milk Packaging Based on BP Neural Network

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  • Received Date: February 12, 2023
  • Available Online: December 18, 2023
  • To investigate the effects of initial protein, fat content, and storage temperature on the shelf life of UHT pure milk packaging, three types of UHT pure milk were used as research objects to experimentally measure sample browning index and protein hydrolysis index during storage at 23, 30, and 37 ℃. Integrate the dataset and determine specific input parameters based on its performance on the prediction set, and carry out UHT pure milk packaging shelf life prediction based on BP neural network. The results showed that the fitting degrees of the BP neural network model for the browning index and protein hydrolysis index of UHT milk were 0.9412 and 0.9527, respectively, and compared with traditional multiple linear regression model’s number of 0.8799 and 0.9211, the BP neural network model with optimized hidden layer neuron numbers had higher prediction accuracy for the changes in characteristic indicators during the storage period of UHT pure milk, providing technical support for rapid and accurate prediction of the shelf life of UHT pure milk with different formulas.
  • [1]
    孙静丽, 杜瑶, 朱莉莉, 等. 牛乳粉中乳蛋白糖基化分析及其水解程度研究[J]. 食品与发酵工业, 2018, 44(7):110−115. [SUN Jingli, DU Yao, ZHU Lili, etc Glycosylation analysis and hydrolysis degree of milk and egg white in milk powder[J]. Food and Fermentation Industry, 2018, 44 (7):110−115.]

    SUN Jingli, DU Yao, ZHU Lili, etc Glycosylation analysis and hydrolysis degree of milk and egg white in milk powder[J]. Food and Fermentation Industry, 2018, 44 (7): 110−115.
    [2]
    LÓPEZ-FANDIÑO R , OLANO A, CORZO N, et al. Proteolysis during storage of UHT milk:Differences between whole and skim milk[J]. Journal of Dairy Research,1993,60(3):339−347. doi: 10.1017/S0022029900027680
    [3]
    靳啸. 基于神经网络的牛奶运销过程新鲜度检测系统的研究[D]. 太原:太原理工大学, 2020. [JIN Xiao. Research on the freshness detection system for milk transportation and sales process based on neural networks[D] Taiyuan:Taiyuan University of Technology, 2020.]

    JIN Xiao. Research on the freshness detection system for milk transportation and sales process based on neural networks[D] Taiyuan: Taiyuan University of Technology, 2020.
    [4]
    刘雪, 李亚妹, 刘娇, 等. 基于BP神经网络的鲜鸡蛋货架期预测模型[J]. 农业机械学报, 2015, 46(10):7−12. [LIU Xue, LI Yamei, LIU Jiao, et al. A fresh egg shelf life prediction model based on BP neural network[J] Journal of Agricultural Machinery, 2015, 46(10):7−12.]

    LIU Xue, LI Yamei, LIU Jiao, et al. A fresh egg shelf life prediction model based on BP neural network[J] Journal of Agricultural Machinery, 2015, 46(10): 7−12.
    [5]
    易甜, 程鹏飞. BP人工神经网络对酸奶货架期的预测[J]. 绿色科技, 2017(10):242−246. [YI Tian, CHENG Pengfei. Prediction of yogurt shelf life using BP artificial neural network[J] Green Technology, 2017(10):242−246.]

    YI Tian, CHENG Pengfei. Prediction of yogurt shelf life using BP artificial neural network[J] Green Technology, 2017(10): 242−246.
    [6]
    JIANG Yujun, YANG Xinyan, JIN Haonan. Shelf-life prediction and chemical characteristics analysis of milk formula during storage[J]. LWT-Food Science & Technology,2021,144(1):1−10.
    [7]
    RANVIR S , SHARMA R , GANDHI K, et al. Assessment of physico-chemical changes in UHT milk during storage at different temperatures[J]. Journal of Dairy Research, 2020, 87(2):1−5.
    [8]
    SAHOO P K, ANSARI M, DATTA A K. Color variation of Ultra-High Temperature (UHT) processed milk using CIE L, a, b, color scale[J]. Indian Journal of Dairy Science,2003(3):56−62.
    [9]
    孙琦, 刘鹭, 张书文, 等. 不同贮藏温度对UHT乳品质的影响[J]. 北京工商大学学报:自然科学版, 2012, 30(4):12−18. [SUN Qi, LIU Lu, ZHANG Shuwen, et al. Effects of different storage temperatures on the quality of UHT milk[J] Journal of Beijing Business University:Natural Science Edition, 2012, 30(4):12−18.]

    SUN Qi, LIU Lu, ZHANG Shuwen, et al. Effects of different storage temperatures on the quality of UHT milk[J] Journal of Beijing Business University: Natural Science Edition, 2012, 30(4): 12−18.
    [10]
    贾凌云, 胡志和, 程凯丽. 基于Arrhenius模型预测无牛奶糖超高温牛奶的货架期[J]. 食品工业科技, 2020(19):232−239. [JIA Lingyun, HU Zhihe, CHENG Kaili. Predicting the shelf life of milk sugar free ultra-high temperature milk based on the Arrhenius model[J] Food Industry Technology, 2020(19):232−239.]

    JIA Lingyun, HU Zhihe, CHENG Kaili. Predicting the shelf life of milk sugar free ultra-high temperature milk based on the Arrhenius model[J] Food Industry Technology, 2020(19): 232−239.
    [11]
    CHAPMAN K W, LAWLESS H T, BOOR K J. Quantitative descriptive analysis and principal component analysis for sensory characterization of ultrapasteurized milk[J]. Journal of Dairy Science,2001,84(1):12−20. doi: 10.3168/jds.S0022-0302(01)74446-3
    [12]
    JIANG Yujun, YANG Xinyan. Shelf-life prediction and chemical characteristics analysis of milk formula during storage[J]. LWT-Food Science & Technology,2021(144):111268.
    [13]
    王少雷, 谭冬飞, 张清阳, 等. 光氧化对超高温灭菌乳感官品质的影响研究[J]. 中国食物与营养, 2021, 27(4):35−38. [WANG Shaolei, TAN Dongfei, ZHANG Qingyang, et al. Study on the effect of photooxidation on the sensory quality of ultra high temperature sterilized milk[J] Chinese Food and Nutrition, 2021, 27(4):35−38.]

    WANG Shaolei, TAN Dongfei, ZHANG Qingyang, et al. Study on the effect of photooxidation on the sensory quality of ultra high temperature sterilized milk[J] Chinese Food and Nutrition, 2021, 27(4): 35−38.
    [14]
    刘海燕, 任青兮, 李启明, 等. UHT乳贮藏期间理化特性和感官品质的变化[J]. 食品研究与开发, 2020, 41(5):7−13. [LIU Haiyan, REN Qingxi, LI Qiming, et al. Changes in physicochemical properties and sensory quality of UHT milk during storage[J] Food Research and Development, 2020, 41(5):7−13.]

    LIU Haiyan, REN Qingxi, LI Qiming, et al. Changes in physicochemical properties and sensory quality of UHT milk during storage[J] Food Research and Development, 2020, 41(5): 7−13.
    [15]
    SINGH R R B, RUHIL A P, JAIN D K, et al. Prediction of sensory quality of UHT milk-A comparison of kinetic and neural network approaches[J]. Journal of Food Engineering,2009,92(2):146−151. doi: 10.1016/j.jfoodeng.2008.10.032
    [16]
    RICHARDS M, DE KOCK H L, BUYS E M. Multivariate accelerated shelf-life test of low fat UHT milk[J]. International Dairy Journal,2014,36(1):38−45. doi: 10.1016/j.idairyj.2013.12.012
    [17]
    SUNDS A V, RAUH V M, SØRENSEN J, et al. Maillard reaction progress in UHT milk during storage at different temperature levels and cycles[J]. International Dairy Journal,2017(77):56−64.
    [18]
    AN D S, LEE J H, LEE D S. Shelf life model of powdered infant formula as function of temperature and oxygen concentration[J]. Food Packaging and Shelf Life,2018,15:130−133. doi: 10.1016/j.fpsl.2017.12.006
    [19]
    武建新, 栾淑芳. UHT灭菌牛奶在贮藏过程中的质量变化[J]. 中国牛奶品工业, 1989, 17(1):17−24. [WU Jianxin, LUAN Shufang. Quality changes of UHT sterilized milk during storage[J] China Milk Industry, 1989, 17(1):17−24.]

    WU Jianxin, LUAN Shufang. Quality changes of UHT sterilized milk during storage[J] China Milk Industry, 1989, 17(1): 17−24.
    [20]
    LOPEZ-FANDINO R, OLANO A, SAN J C, et al. Short communications application of reversed-phase hplc to the study of proteolysis in UHT milk[J].Journal of Dairy Research, 1993, 60(1):111-116.
    [21]
    李星, 顾雨香, 任青兮. 贮藏期UHT奶中蛋白质组成结构及其糖基化的变化[J]. 中国牛奶品工业, 2021, 49(3):10−14. [LI Xing, GU Yuxiang, REN Qingxi. Changes in protein composition, structure, and glycosylation in UHT milk during storage[J] China Milk Industry, 2021, 49(3):10−14.]

    LI Xing, GU Yuxiang, REN Qingxi. Changes in protein composition, structure, and glycosylation in UHT milk during storage[J] China Milk Industry, 2021, 49(3): 10−14.
    [22]
    陈美霞, BROWNING E, LEWIS M, 等. 评估超高温灭菌奶安全和质量的2个重要参数[J]. 中国牛奶业,2016(5):60−68. [CHEN Meixia, BROWNING E, LEWIS M, et al. Two important parameters for evaluating the safety and quality of ultra-high temperature sterilized milk[J]. China Milk Industry,2016(5):60−68.]

    CHEN Meixia, BROWNING E, LEWIS M, et al. Two important parameters for evaluating the safety and quality of ultra-high temperature sterilized milk[J]. China Milk Industry, 20165): 6068.
    [23]
    肖立中, 费玉刚, 田怀香, 等. 基于BP神经网络的鸡精货架期模型研究[J]. 中国调味品,2017,42(7):5−9. [XIAO Lizhong, FEI Yugang, TIAN Huaixiang, et al. A study on the shelf life model of chicken sperm based on bp neural network[J]. Chinese Seasonings,2017,42(7):5−9.]

    XIAO Lizhong, FEI Yugang, TIAN Huaixiang, et al. A study on the shelf life model of chicken sperm based on bp neural network[J]. Chinese Seasonings, 2017, 427): 59.
    [24]
    侯温甫, 王宏勋, 艾有伟, 等. 基于神经网络的冷鲜猪肉的货架期预测方法:中国, 112345716A[P]. 2021-02-09. [HOU Wenfu, WANG Hongxun, AI Youwei, et al. A shelf life prediction method for cold fresh pork based on neural networks:China, 112345716A [P]. 2021-02-09.]

    HOU Wenfu, WANG Hongxun, AI Youwei, et al. A shelf life prediction method for cold fresh pork based on neural networks: China, 112345716A [P]. 2021-02-09.
    [25]
    马惠玲, 曹梦柯, 王栋, 等. 苹果货架期GAN-BP-ANN预测模型研究[J]. 农业机械学报, 2021, 52(11):367-375. [MA Huiling, CAO Mengke, WANG Dong, et al. Research on the GAN-BP-ANN prediction model for apple shelf life[J]. Journal of Agricultural Machinery, 2021, 52(11):367-375.]

    MA Huiling, CAO Mengke, WANG Dong, et al. Research on the GAN-BP-ANN prediction model for apple shelf life[J]. Journal of Agricultural Machinery, 2021, 52(11): 367-375.
    [26]
    沈旺旺, 高振洪, 樊沁昕, 等. 温度对自热食品理化指标影响及其货架期预测方法[J]. 包装工程, 2021, 42(9):141−151. [SHEN Wangwang, GAO Zhenhong, FAN Qinxin, et al. The influence of temperature on the physicochemical indicators of self heating food and its shelf life prediction method[J]. Packaging Engineering, 2021, 42(9):141−151.]

    SHEN Wangwang, GAO Zhenhong, FAN Qinxin, et al. The influence of temperature on the physicochemical indicators of self heating food and its shelf life prediction method[J]. Packaging Engineering, 2021, 42(9): 141−151.
    [27]
    骆洋翔. 速冻汤圆贮藏及流通过程中品质变化及货架期预测研究[D]. 郑州:河南农业大学, 2019. [LUO Yangxiang. Study on quality change and shelf life prediction of quick frozen rice dumpling during storage and circulation[D]. Zhengzhou:Henan Agricultural University, 2019.]

    LUO Yangxiang. Study on quality change and shelf life prediction of quick frozen rice dumpling during storage and circulation[D]. Zhengzhou: Henan Agricultural University, 2019.
    [28]
    GOYAL S. Radial basis artificial neural network computer engineering methodology for predicting shelf life of brown milk cakes decorated with almonds[J]. International Journal of Latest Trends in Computing, 2011:100−105.
    [29]
    习鸿杰, 宋利君, 邓玉明, 等. 初始脂肪含量对超高温灭菌牛奶贮存品质变化及货架期的影响[J/OL]. 食品与发酵工业, 1−11[2024-01-02]. https://doi.org/10.13995/j.cnki.11-1802/ts.034566. [XI Hongjie, SONG Lijun, DENG Yuming, et al. The effect of initial fat content on the storage quality changes and shelf life of ultra-high temperature sterilized milk[J/OL]. Food and Fermentation Industry, 1−11[2024-01-02]. https://doi.org/10.13995/j.cnki.11-1802/ts.034566.]

    XI Hongjie, SONG Lijun, DENG Yuming, et al. The effect of initial fat content on the storage quality changes and shelf life of ultra-high temperature sterilized milk[J/OL]. Food and Fermentation Industry, 1−11[2024-01-02]. https://doi.org/10.13995/j.cnki.11-1802/ts.034566.
    [30]
    GOYAL S, GOYAL G K. Intelligent artificial neural network computing models for predicting shelf life of processed cheese[J]. International Journal of Intelligent Systems & Applications,2012,4(2):107−111.
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