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QoS-Aware Sensor Virtualization for Provisioning Green Sensors-as-a-Service

机译:QoS感知传感器虚拟化,用于提供绿色传感器 - AS-Service

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This work addresses the problem of efficient virtual sensor formation in sensor-cloud for provisioning green Internet of Things (IoT)-based services. The sustainability of sensor-cloud primarily depends on its quality of service (QoS), resource utilization efficiency, and the revenue earned by its stakeholders. As sensor nodes are resource-constrained, it is important to minimize the overall energy consumption at these devices and for the overall network, thereby reducing the cost of service provisioning. Additionally, it is important to ensure that there is no compromise in the QoS to establish a continuous inflow of revenue for the service-provider. Existing works on virtual sensor formation in sensor-cloud barely consider resource consumption due to multihop communication from source nodes to the base-station, which plays a significant role in determining the resource consumption of the network. Thus, in this work, we model this problem using a game-theoretic approach and propose a hybrid algorithm, named GS2, to solve it. We observe that, by modifying the price paid to the sensor-owners, the service-provider is able to control the resource utilization of the network. Simulations show that GS2 reduces the overall energy consumption by 15.92-24.18%, and increases the revenues of the service-providers and sensor-owners by 8.33-18.33% and 21.05-38.09%, respectively.
机译:这项工作涉及高效的虚拟传感器形成的传感器,云用于供应物联网(IOT)绿色上网的问题为基础的服务。传感器云的可持续性主要取决于它的服务质量(QoS)的,资源利用效率,并且通过它的利益相关者获得的收入。传感器节点是资源受限的,它在这些装置和网络整体最小化总的能量消耗,从而降低服务供应的成本是重要的。此外,重要的是要确保有在QoS没有妥协,建立财政收入的持续流入为服务提供商。虚拟传感器形成在传感器云现有作品几乎不考虑资源消耗由于多跳到基站,它在确定所述网络的资源消耗显著角色从源节点的通信。因此,在这项工作中,我们建立一个使用博弈论的方法这个问题,并提出了一种混合算法,名为GS2,来解决这个问题。我们观察到,通过修改支付给传感器业主价格,服务提供商能够控制网络的资源利用率。仿真结果表明,通过GS2%15.92-24.18减少了总的能量消耗,并且通过分别8.33-18.33%和21.05-38.09%,增加了服务提供商和传感器所有者的收入。

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