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Solving A Sealed-bid Reverse Auction Problem By Multiple-criterion Decision-making Methods

机译:用多准则决策方法求解密封投标逆向拍卖问题

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摘要

This study presents a model for solving the sealed-bid, multiple-issue reverse auction problem, using multiple-criterion decision-making approaches, such that the interests of both the buyer and the supplier are satisfied. On the supplier side, the bid construction process is formulated as a fuzzy multiple-objective programming problem, and is solved using an exhausted enumeration algorithm which adjusts the production plan in accordance with the buyer's demand, based on the current master production schedule (MPS) and the available-to-promise (ATP) inventory. The use of the information of MPS and ATP enables the supplier to make accurate estimates of the production costs associated with specific delivery dates, and thus facilitates the construction of a bid which is both profitable and likely to secure the contract. On the buyer side, the winner determination process is treated as a multiple-attribute decision-making problem, and is solved using the Technique for Order Preference by Similarity to Ideal Solution (TOPSIS) method. The validity of the proposed approach is demonstrated via an illustrative example.
机译:这项研究提出了一种使用多准则决策方法解决密封投标,多问题逆向拍卖问题的模型,从而满足了买方和供应商的利益。在供应商方面,投标的构建过程被公式化为模糊的多目标规划问题,并使用精疲力尽的枚举算法来解决,该算法根据买方的主要生产计划(MPS)根据买方的需求调整生产计划以及可承诺量(ATP)库存。 MPS和ATP信息的使用使供应商能够准确估算与特定交货日期相关的生产成本,从而有助于构建既有利可图又很可能获得合同的投标。在买方方面,获胜者确定过程被视为多属性决策问题,并使用“与理想解决方案相似的订单偏好技术”(TOPSIS)方法解决。通过一个示例说明了所提出方法的有效性。

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