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Joint determination of rack configuration and shelf space allocation for a retailer

Author

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  • Karki, Uttam
  • Guthrie, Bradley
  • Parikh, Pratik J.

Abstract

For brick-and-mortar retailers to be successful, it is critical for them to optimize their rack layout and product placement to draw the attention of shoppers. Recent studies show that racks placed at a non-90° angle along the shopper's path or rack heights positioned below a shopper's eye-height can provide improved visibility of products on those racks. While this can increase the likelihood of a shopper entering that aisle for an impulse purchase, the increase in floor space and restocking costs cannot be ignored. To address these tradeoffs, we propose the Joint Rack Configuration and Shelf Space Allocation (JRC-SSA) problem that jointly determines rack decisions (orientation and height) and product decisions (placement and number of locations) in order to maximize the retailer's impulse profit. We propose an optimization model for JRC-SSA and solve it using a Particle Swarm Optimization based algorithm. Results indicate that a retailer can realize up to 10.1% increase in profit through the JRC-SSA compared to a traditional 7 ft high rack placed at 90° orientation. Acute-angled racks appear to increase impulse profit over 90° racks at low space costs; shorter racks appear prominent for low restocking costs. We also notice that product location and allocation on the rack were altered substantially; high impulse products were often switched from the front to the back face (or vice-versa) to maintain high visibility in different rack orientations. Retailers can use these findings to redesign store sections for enhanced product visibility, which would not only increase their revenue, but also improve shopper experience.

Suggested Citation

  • Karki, Uttam & Guthrie, Bradley & Parikh, Pratik J., 2021. "Joint determination of rack configuration and shelf space allocation for a retailer," International Journal of Production Economics, Elsevier, vol. 234(C).
  • Handle: RePEc:eee:proeco:v:234:y:2021:i:c:s0925527320302966
    DOI: 10.1016/j.ijpe.2020.107943
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    References listed on IDEAS

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    1. Bradley Guthrie & Pratik J. Parikh, 2020. "The rack orientation and curvature problem for retailers," IISE Transactions, Taylor & Francis Journals, vol. 52(10), pages 1081-1097, October.
    2. Amrouche, Nawel & Zaccour, Georges, 2007. "Shelf-space allocation of national and private brands," European Journal of Operational Research, Elsevier, vol. 180(2), pages 648-663, July.
    3. Haluk Yapicioglu & Alice Smith, 2012. "Retail space design considering revenue and adjacencies using a racetrack aisle network," IISE Transactions, Taylor & Francis Journals, vol. 44(6), pages 446-458.
    4. Tulay Flamand & Ahmed Ghoniem & Bacel Maddah, 2016. "Promoting impulse buying by allocating retail shelf space to grouped product categories," Journal of the Operational Research Society, Palgrave Macmillan;The OR Society, vol. 67(7), pages 953-969, July.
    5. Murray, Chase C. & Talukdar, Debabrata & Gosavi, Abhijit, 2010. "Joint Optimization of Product Price, Display Orientation and Shelf-Space Allocation in Retail Category Management," Journal of Retailing, Elsevier, vol. 86(2), pages 125-136.
    6. Anderson, Evan E, 1979. "An Analysis of Retail Display Space: Theory and Methods," The Journal of Business, University of Chicago Press, vol. 52(1), pages 103-118, January.
    7. Zhao, Ju & Zhou, Yong-Wu & Wahab, M.I.M., 2016. "Joint optimization models for shelf display and inventory control considering the impact of spatial relationship on demand," European Journal of Operational Research, Elsevier, vol. 255(3), pages 797-808.
    8. repec:dau:papers:123456789/1757 is not listed on IDEAS
    9. Flamand, Tulay & Ghoniem, Ahmed & Haouari, Mohamed & Maddah, Bacel, 2018. "Integrated assortment planning and store-wide shelf space allocation: An optimization-based approach," Omega, Elsevier, vol. 81(C), pages 134-149.
    10. Hwang, Hark & Choi, Bum & Lee, Min-Jin, 2005. "A model for shelf space allocation and inventory control considering location and inventory level effects on demand," International Journal of Production Economics, Elsevier, vol. 97(2), pages 185-195, August.
    11. Pierre Desmet & Valérie Renaudin, 1998. "Estimation of Product Category Sales Responsiveness to Allocated Shelf Space," Post-Print halshs-00143451, HAL.
    12. Anirban Kundu & Pranab K. Dan, 2012. "Metaheuristic in facility layout problems: current trend and future direction," International Journal of Industrial and Systems Engineering, Inderscience Enterprises Ltd, vol. 10(2), pages 238-253.
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    1. Abdelaziz, Fouad Ben & Maddah, Bacel & Flamand, Tülay & Azar, Jimmy, 2024. "Store-Wide space planning balancing impulse and convenience," European Journal of Operational Research, Elsevier, vol. 312(1), pages 211-226.
    2. Monika Matušovičová & Martin Kuchta & Monika Stanková, 2022. "Improvement in Customer Experience Through the Creation of Virtual Brand Communities," Tržište/Market, Faculty of Economics and Business, University of Zagreb, vol. 34(1), pages 79-92.

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