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Combining models of capacity supply to handle volatile demand: The economic impact of surplus capacity in cloud service environments

机译:结合容量供应模型来应对波动的需求:云服务环境中剩余容量的经济影响

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In the paper at hand we analyze the capacity planning problem of a service vendor providing a business process characterized by volatile demand to his customers. Thereby, we consider the situation that the service vendor executes certain activities by himself whereas specific parts of the business process are outsourced to external providers. For the outsourced parts, the vendor can choose between different models of capacity supply (MCS) that are offered by external providers differentiating with respect to elasticity of provided capacity and the underlying pricing model. Thereby, in addition to the two "traditional" MCS dedicated capacity and elastic capacity, recent developments in information technology enable the on-demand use of surplus capacity from an external providers' market. Since an integrated analysis of these three MCS is still missing in common literature, we develop an optimization model allowing for the simultaneous consideration of the three different MCS within an integrated queuing system. By analyzing the optimization model with help of a discrete event simulation, we study the question of how these different MCS may be combined to minimize the total operating costs of the service vendor considering volatile demand. The simulation results show that combining different MCS tends to be favorable in contrast to the stand-alone usage of a certain MCS. In particular, combining the additional option of using surplus capacity with "traditional" MCS promises cost advantages. Our optimization model therewith provides first insights in the potential economic benefits of IT-enabled MCS.
机译:在本文中,我们分析了服务提供商的容量规划问题,该服务提供商提供了以其客户需求不稳定为特征的业务流程。因此,我们考虑了服务供应商自己执行某些活动而业务流程的特定部分外包给外部提供商的情况。对于外包零件,供应商可以在外部供应商提供的容量供应(MCS)的不同模型之间进行选择,这些模型在提供的容量的弹性和基础定价模型方面有所区别。因此,除了两个“传统” MCS专用容量和弹性容量外,信息技术的最新发展还使按需使用外部供应商市场上的剩余容量成为可能。由于在普通文献中仍然缺少对这三个MCS的集成分析,因此我们开发了一个优化模型,允许在集成排队系统中同时考虑三个不同的MCS。通过在离散事件模拟的帮助下分析优化模型,我们研究了如何将这些不同的MCS组合在一起以最大程度地考虑需求波动的服务供应商的总运营成本的问题。仿真结果表明,与单独使用某个MCS相比,组合不同的MCS倾向于更有利。特别是,将使用剩余容量的其他选择与“传统” MCS结合在一起可带来成本优势。我们的优化模型可为您提供基于IT的MCS潜在经济利益的初步见解。

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