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Numerical investigation on mixed bundling and pricing of information products

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  • Li, Minqiang
  • Feng, Haiyang
  • Chen, Fuzan
  • Kou, Jisong

Abstract

The bundling sale of information products has been a prevalent strategy in information industries. This paper attempts to study two issues that have not been adequately addressed in previous researches. First, we define the measure of customer heterogeneity by considering both the statistic characteristics of customer reservation price and the marginal cost of information products. Numerical computation indicates that the maximal profit of three bundling strategies (individual sale, pure bundling, and mixed bundling) drops monotonically with the increasing of heterogeneity among customers, and that mixed bundling is more profitable than schemes of either the pure bundling or individual sale when non-negligible heterogeneity exists among customers. Second, we present the mixed partial bundling scheme for real-world situations in which a large number of information products are offered and the preferences or valuations of customers considerably vary. We build a bilevel programming model to define the behaviors of the monopolist and customers, and develop a heuristic algorithm to construct optimal mixed partial bundling schemes. Numerical experiments verify that the mixed partial bundling engenders less substantial deadweight loss and extracts more surplus from heterogeneous customers, which illustrates that the mixed partial bundling strategy is a more flexible and efficient way to accommodate multiple segments of customers.

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  • Li, Minqiang & Feng, Haiyang & Chen, Fuzan & Kou, Jisong, 2013. "Numerical investigation on mixed bundling and pricing of information products," International Journal of Production Economics, Elsevier, vol. 144(2), pages 560-571.
  • Handle: RePEc:eee:proeco:v:144:y:2013:i:2:p:560-571
    DOI: 10.1016/j.ijpe.2013.04.015
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    3. Ali Azadeh & Hassan Songhori & Nima Salehi, 2017. "A unique optimization model for deterministic bundle pricing of two products with limited stock," International Journal of System Assurance Engineering and Management, Springer;The Society for Reliability, Engineering Quality and Operations Management (SREQOM),India, and Division of Operation and Maintenance, Lulea University of Technology, Sweden, vol. 8(2), pages 1154-1160, November.
    4. Hajji, Adnène & Pellerin, Robert & Gharbi, Ali & Léger, Pierre Majorique & Babin, Gilbert, 2016. "Toward valuable prediction of ERP diffusion in North American automotive industry: A simulation based approach," International Journal of Production Economics, Elsevier, vol. 175(C), pages 61-70.
    5. Xiaoxiao Luo & Minqiang Li & Nan Feng & Fuzan Chen, 2017. "Optimal Design on Customized Bundling Strategy of Information Goods for Customers with Two-Dimensional Heterogeneity," Asia-Pacific Journal of Operational Research (APJOR), World Scientific Publishing Co. Pte. Ltd., vol. 34(02), pages 1-32, April.
    6. Jiang, Yuanchun & Shang, Jennifer & Liu, Yezheng, 2013. "Optimizing shipping-fee schedules to maximize e-tailer profits," International Journal of Production Economics, Elsevier, vol. 146(2), pages 634-645.
    7. Chen, Ting & Shan, Feifei & Yang, Feng & Xu, Fengmei, 2023. "Online retailer bundling strategy in a dual-channel supply chain," International Journal of Production Economics, Elsevier, vol. 259(C).
    8. Sarat Kumar Jena & Abhijeet Ghadge, 2022. "Product bundling and advertising strategy for a duopoly supply chain: a power-balance perspective," Annals of Operations Research, Springer, vol. 315(2), pages 1729-1753, August.
    9. Pan, Fei & Pan, Shenle & Zhou, Wei & Fan, Tijun, 2022. "Perishable product bundling with logistics uncertainty: Solution based on physical internet," International Journal of Production Economics, Elsevier, vol. 244(C).
    10. Huang, Yeu-Shiang & Ho, Jyh-Wen & Wu, Guan-Jin, 2022. "A study on promotion with strategic two-stage customized bundling," Journal of Retailing and Consumer Services, Elsevier, vol. 68(C).
    11. Kopczewski, Tomasz & Sobolewski, Maciej & Miernik, Ireneusz, 2018. "Bundling or unbundling? Integrated simulation model of optimal pricing strategies," International Journal of Production Economics, Elsevier, vol. 204(C), pages 328-345.
    12. Carmen D. Ã lvarez-Albelo, 2020. "The role of complementarity of goods in a mixed bundling strategy," Economics and Business Letters, Oviedo University Press, vol. 9(1), pages 31-40.
    13. Li, Jianbin & Liu, Lang & Luo, Xiaomeng & Zhu, Stuart X., 2023. "Interactive bundle pricing strategy for online pharmacies," Transportation Research Part E: Logistics and Transportation Review, Elsevier, vol. 177(C).
    14. Cataldo, Alejandro & Ferrer, Juan–Carlos, 2017. "Optimal pricing and composition of multiple bundles: A two-step approach," European Journal of Operational Research, Elsevier, vol. 259(2), pages 766-777.
    15. Raghu Nandan Giri & Shyamal Kumar Mondal & Manoranjan Maiti, 2020. "Bundle pricing strategies for two complementary products with different channel powers," Annals of Operations Research, Springer, vol. 287(2), pages 701-725, April.
    16. Haiyan Shan & Chen Zhang & Guo Wei, 2020. "Bundling or Unbundling? Pricing Strategy for Complementary Products in a Green Supply Chain," Sustainability, MDPI, vol. 12(4), pages 1-25, February.

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