[1] Chen, J., Bell, P.C. (2012). Implementing market segmentation using full-refund and no-refund customer returns policies in a dual-channel supply chain structure. International Journal of Production Economics, 136(1): 56-66.
[2] Pan, X.Y., Ma, J.Z., Wu, C.X. (2019). Product pricing considering the consumer preference based on Internet of Things. Cluster Computing, 22(6): 15379-15385.
[3] [3] Liu, P., Zhang, Z., Dong, F.Y. (2022). Subsidy and pricing strategies of an agri-food supply chain considering the application of Big Data and blockchain. RAIRO-Operations Research, 56(3): 1995-2014.
[4] Sima, V., Gheorghe, I.G., Subić, J., Nancu, D. (2020). Influences of the industry 4.0 revolution on the human capital development and consumer behavior: A systematic review. Sustainability, 12(10): 4035.
[5] Debo, L.G., Toktay, L.B., Van Wassenhove, L.N. (2005). Market segmentation and product technology selection for remanufacturable products. Management Science, 51(8): 1193-1205.
[6] Ma, D., Hu, J. (2020). Research on collaborative management strategies of closed-loop supply chain under the influence of big-data marketing and reference price effect. Sustainability, 12(4): 1685.
[7] میرباقری، فاطمه؛ محمدیان، ایوب؛ خانلری، امیر (1398). شناسایی و طبقهبندی کاربردهای نوآورانه اینترنت اشیاء در بازاریابی دیجیتال. مدیریت بازرگانی، شماره 11 (4)، 719 – 741.
[8] Ling, Y., Xu, J. (2021). Price and greenness competition between duopoly firms considering consumer premium payments. Environment, Development & Sustainability, 23(3).
[9] Xu, L., Peng, Q., Chen, J., Wang, C. (2021). Government subsidies in manufacturing and remanufacturing with consumer segment and heterogeneous demand. Scientia Iranica, 28(3): 1817-1829.
[10] Zhang, Y., Zhang, W. (2023). Optimal pricing and greening decisions in a supply chain when considering market segmentation. Annals of Operations
Research, 324(1): 93-130.
[11] Cheng, Y., Wang, J. (2024). Decision-Making in Remanufacturing Supply Chains: Game Theory Analysis of Recycling Models and Consumer Value Perception. Sustainability, 16(23): 10476.
[12] ستونه، شایان؛ شیخ سجادیه، محسن؛ زیاری، متینه (1402). مدلسازی و تحلیل استراتژیهای قیمتگذاری و نوآوری در توسعه محصول با مشتریان ناهمگن و سیاستهای دوگانه، نشریه پژوهشهای مهندسی صنایع در سیستمهای تولید، دوره ۱۳، شماره ۲۶، ۹۵-۱۱۷.
[13] Chen, K., Zha, Y., Alwan, L.C., Zhang, L. (2020). Dynamic pricing in the presence of reference price effect and consumer strategic behaviour. International Journal of Production Research, 58(2): 546-561.
[14] Wei, Y., Li, F. (2020). Omnichannel supply chain operations for luxury products with conspicuous consumers. Transportation Research Part E: Logistics and Transportation Review, 137: 101918.
[15] عابدینی ندوشن، شایسته؛ اقبالی، محمدعلی؛ راستی برزکی، مرتضی (1403). یک رویکرد نظریه بازی برای قیمتگذاری در زنجیرهتأمین دوکاناله با درنظر گرفتن خدمات لجستیک، نشریه پژوهشهای مهندسی صنایع در سیستمهای تولید، دوره ۱۲، شماره ۲۴، ۱۱۵-۱۳۱.
[16] جعفری، حامد و حقیقی، محمدحسین (1400). تصمیمات قیمتگذاری و خدمات خردهفروشی در زنجیرهتأمینی شامل یک تولیدکننده و یک خردهفروش بااستفاده از رویکرد نظریه بازی، نشریه پژوهشهای مهندسی صنایع در سیستمهای تولید، دوره ۹، شماره ۱۹، ۱۲۵-۱۳۵.
[17] Zhang, M., Ying, S., Xu, X. (2023). Dual‐Channel Supply Chain Coordination with Loss‐Averse Consumers. Discrete Dynamics in Nature and
Society, 1: 3172590.
[18] Dai, L., Shu, T., Zheng, Y., Wang, S. (2024). Models for dual-channel remanufacturing supply chain with reference price effect under static and dynamic games. RAIRO-Operations Research, 58 (5):4437-4475.
[19] Yan, B., Wu, X. H., Ye, B., Zhang, Y.W. (2017). Three-level supply chain coordination of fresh agricultural products in the Internet of Things. Industrial Management & Data Systems, 117(9): 1842-1865.
[20] Jena, S.K., Singhal, D. (2023). Optimizing the competitive sustainable process and pricing decision of digital supply chain: A power-balance perspective. Computers & Industrial Engineering, 177: 109054.
[21] Wang, D., Tian, X., Guo, M. (2024). Pricing decision and channel selection of fresh agricultural products dual-channel supply chain based on blockchain. Plos one, 19(3): 0297484.
[22] Xia, L., Wang, L., Xiao, R., Wang, J., Hou, P. (2025). Blockchain and pricing strategies in supply chains considering consumer traceability preference and power structure. International Journal of Production Research, 1-20.
[23] محمدی پور، پوریا؛ فاروقی، هیوا؛ رسائی، حسن (1403). برنامهریزی توأم نگهداری تعمیرات و تولید مبتنی بر شرایط در یک سیستم با افق برنامهریزی محدود و تقاضا از پیش تعیینشده، نشریه پژوهشهای مهندسی صنایع در سیستمهای تولید، دوره ۱۲، شماره ۲۵، ۳۱-۴۵.
[24] Yang, Z., Pan, R. (2024). Pricing and coordination strategy of product service supply chain under digital transformation. IEEE Access.
[25] Zhang, X., Zhang, X. (2020). IoT-enabled SmartGreen Products: Environmental Awareness, Network Externality and Competition. Twenty-Fourth Pacific Asia Conference on Information Systems (PACIS), Dubai, UAE.
[26] Zhang, X., Yue, W.T. (2019). Transformative value of the Internet of Things and pricing decisions. Electronic Commerce Research and Applications, 34: 100825.
[27] Zhao, S., Li, W. (2023). Blockchain-based traceability system adoption decision in the dual-channel perishable goods market under different pricing policies. International Journal of Production
Research, 61(13): 4548-4574.
[28] Bahroun, Z., Ben-Daya, M., & Hassini, E. (2020). IoT quality-controlled demand pricing model in food supply chains. In Smart and Sustainable Supply Chain and Logistics–Trends. Challenges, Methods and Best Practices, 1: 381-394.
[29] Ben-Daya, M., Hassini, E., Bahroun, Z., Saeed, H. (2023). Optimal pricing in the presence of IoT investment and quality-dependent demand. Annals of Operations Research, 324(1): 869-892.
[30] Dey, S.K., Kundu, K., Das, P. (2024). Digital technology based game-theoretic pricing strategies in a three-tier perishable food supply chain. Annals of Operations Research, 1-27.
[31] Hassini, E., Ben-Daya, M., Bahroun, Z. (2025). Modeling the impact of IoT technology on food supply chain operations. Annals of Operations
Research, 348(3): 1619-1648.
[32] De Giovanni, P. (2020). “Digital supply chain through IoT, design quality, and circular economy” in Dynamic quality models and games in digital supply chains: how digital transformation impacts supply chain quality management, 1nd Edition, Springer Nature Switzerland, 57-89.
[33] Ma, S., Li, G., Liu, M. (2021). Procurement competition in the presence of IoT-enabled B2B E-commerce. Electronic Commerce Research and Applications, 49: 101091.
[34] He, L., Bai, W., Lin, X., Yue, X. (2025). Differentiated Pricing and Channel Configuration in Blockchain-Enabled Sustainable Platform Supply Chains. IEEE Transactions on Engineering Management, 72: 4155-4170.
[35] Ye, C., Weng, S., Zhang, X. (2025). Research on low carbon collaborative strategy of supply chain under blockchain information-sharing mechanism. International Journal of Environmental Science and Technology, 22(6): 4655-4670.
[36] Nozari, H., Abdi, H., Szmelter-Jarosz, A., Motevalli, S.H. (2024). Design of dual-channel supply chain network based on the internet of things under uncertainty. Mathematical and Computational Applications, 29: 1-28.
[37] Zhang, Y., Liu, N. (2021). Optimal internet of things technology adoption decisions and pricing strategies for high-traceability logistics services.
Sustainability, 13(19): 10597.
[38] Boyd, S., Vandenberghe, L. (2004). Convex Optimization, 1nd Edition, Cambridge University Press.
[39] Brent, R. P. (1973). Algorithms for Minimization without Derivatives, 1nd Edition, Prentice-Hall.
[40] Press, W.H., Teukolsky, S.A., Vetterling, W.T., Flannery, B.P. (2007). Numerical Recipes: The Art of Scientific Computing, 3rd Edition, Cambridge University Press.
[41] Fletcher, R. (1987). Practical Methods of Optimization, 1rd Edition, John Wiley.