Securing necessary resources for edge computing processes via effective resource trading becomes a critical technique in supporting computation-intensive mobile applications. Conventional onsite spot trading could facilitate this paradigm with proper incentives, which, however, incurs excessive decision-making latency/energy consumption, and further leads to underutilization of dynamic resources. Motivated by this, a hybrid market unifying futures and spot is proposed to facilitate resource trading among an edge server (seller) and multiple smart devices (buyers) by encouraging some buyers to sign a forward contract with seller in advance, while leaving the remaining buyers to compete for available resources with spot trading. Specifically, overbooking is adopted to achieve substantial utilization and profit advantages owing to dynamic resource demands. By integrating overbooking into futures market, mutually beneficial and risk-tolerable forward contracts with appropriate overbooking rate can be achieved relying on analyzing historical statistics associated with future resource demand and communication quality, which are determined by an alternative optimization-based negotiation scheme. Besides, spot trading problem is studied via considering uniform/differential pricing rules, for which two bilateral negotiation schemes are proposed by addressing both non-convex optimization and knapsack problems. Experimental results demonstrate that the proposed mechanism achieves mutually beneficial players' utilities, while outperforming baseline methods on critical indicators, e.g., decision-making latency, resource usage, etc.
翻译:通过有效的资源交易,为边缘计算流程确保必要资源成为支持计算密集型移动应用的关键技术。常规现场交易可以提供适当的奖励,促进这一范例,但是,这会引起过度的决策性延迟/能源消耗,进而导致动态资源的利用不足。为此,提议建立一个混合市场,统一未来和地点,以便通过鼓励一些买方事先与卖方签署远期合同,同时让其余买方通过现货交易竞争现有资源。具体而言,采用超额订票可以实现大量利用和利润优势,因为资源需求动态。通过将超额订票纳入期货市场、互利和风险可容忍的远期合同,并采用适当的超额订票率,可以实现这一目的,依靠分析与未来资源需求和通信质量相关的历史统计数据,而这种历史统计数据是由基于其他优化的谈判计划决定的。此外,通过考虑统一/差别定价规则研究现期交易问题,为此提出了两个双边谈判计划,即解决非集装箱优化和Knapsack的利用问题,同时解决关键的使用率问题。实验性结果表明,在确定基准使用率和基准指标的同时,可以实现拟议中与未来资源需求和通信质量相关的指标。