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Task allocation in group of nodes in the IoT: A consensus approach

机译:物联网中节点组中的任务分配:一种共识方法

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摘要

The realization of the Internet of Things (IoT) paradigm relies on the implementation of systems of cooperative intelligent objects with key interoperability capabilities. In order for objects to dynamically cooperate to IoT applications' execution, they need to make their resources available in a flexible way. However, available resources such as electrical energy, memory, processing, and object capability to perform a given task, are often limited. Therefore, resource allocation that ensures the fulfilment of network requirements is a critical challenge. In this paper, we propose a distributed optimization protocol based on consensus algorithm, to solve the problem of resource allocation and management in IoT heterogeneous networks. The proposed protocol is robust against links or nodes failures, so it's adaptive in dynamic scenarios where the network topology changes in runtime. We consider an IoT scenario where nodes involved in the same IoT task need to adjust their task frequency and buffer occupancy. We demonstrate that, using the proposed protocol, the network converges to a solution where resources are homogeneously allocated among nodes. Performance evaluation of experiments in simulation mode and in real scenarios show that the algorithm converges with a percentage error of about±5% with respect to the optimal allocation obtainable with a centralized approach.
机译:物联网(IoT)范例的实现依赖于具有关键互操作性功能的协作智能对象系统的实现。为了使对象能够动态协作以执行IoT应用程序,它们需要以灵活的方式使其资源可用。但是,执行给定任务的可用资源(例如电能,内存,处理和对象功能)通常受到限制。因此,确保满足网络要求的资源分配是一项严峻的挑战。本文提出了一种基于共识算法的分布式优化协议,以解决物联网异构网络中的资源分配和管理问题。所提出的协议对于链路或节点故障具有鲁棒性,因此在网络拓扑在运行时发生变化的动态场景中具有自适应性。我们考虑了一个IoT场景,其中涉及同一IoT任务的节点需要调整其任务频率和缓冲区占用率。我们证明,使用提出的协议,网络可以收敛到在节点之间均匀分配资源的解决方案。在模拟模式和真实场景下进行的实验性能评估表明,相对于使用集中式方法可获得的最佳分配,该算法收敛于约±5%的百分比误差。

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