开放市场环境下基于实时定价的资源配置

IF 3.9 3区 计算机科学 Q2 COMPUTER SCIENCE, INFORMATION SYSTEMS ACM Transactions on Internet Technology Pub Date : 2023-04-05 DOI:https://dl.acm.org/doi/10.1145/3465237
Pankaj Mishra, Ahmed Moustafa, Takayuki Ito
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引用次数: 0

摘要

开放的市场环境由一组动态地离开或加入市场的参与者(供应商和消费者)组成。因此,产生的活力导致这些开放市场中资源的供求不确定。具体而言,在这种不确定的市场中,供应商试图根据市场需求动态改变销售价格,从而实现收入最大化。在这方面,迫切需要一种最优的资源配置方法,以优化公开市场中基于资源供需的销售价格。因此,最优销售价格应使卖主的收益最大化,同时保护买者的效用。在此背景下,我们提出了一种在开放市场环境中进行资源配置的实时定价方法。该方法引入了一种基于优先级的公平机制,以反向拍卖的方式分配可用资源。最后,我们将提出的方法与两种最先进的资源分配方法进行了比较。实验结果表明,该方法在实现供应商收益最大化方面优于其他两种资源分配方法。
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Real-time Pricing-based Resource Allocation in Open Market Environments

Open market environments consist of a set of participants (vendors and consumers) that dynamically leave or join the market. As a result, the arising dynamism leads to uncertainties in supply and demand of the resources in these open markets. In specific, in such uncertain markets, vendors attempt to maximise their revenue by dynamically changing their selling prices according to the market demand. In this regard, an optimal resource allocation approach becomes immensely needed to optimise the selling prices based on the supply and demand of the resources in the open market. Therefore, optimal selling prices should maximise the revenue of vendors while protecting the utility of buyers. In this context, we propose a real-time pricing approach for resource allocation in open market environments. The proposed approach introduces a priority-based fairness mechanism to allocate the available resources in a reverse-auction paradigm. Finally, we compare the proposed approach with two state-of-the-art resource allocation approaches. The experimental results show that the proposed approach outperforms the other two resource allocation approaches in its ability to maximise the vendors’ revenue.

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来源期刊
ACM Transactions on Internet Technology
ACM Transactions on Internet Technology 工程技术-计算机:软件工程
CiteScore
10.30
自引率
1.90%
发文量
137
审稿时长
>12 weeks
期刊介绍: ACM Transactions on Internet Technology (TOIT) brings together many computing disciplines including computer software engineering, computer programming languages, middleware, database management, security, knowledge discovery and data mining, networking and distributed systems, communications, performance and scalability etc. TOIT will cover the results and roles of the individual disciplines and the relationshipsamong them.
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