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Self-Organized Connected Objects: Rethinking QoS Provisioning for IoT Services

机译:自组织的连接对象:重新思考IoT服务的QoS设置

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摘要

The proliferation of connected objects has revolutionized the traditional Internet, giving rise to the emerging Internet of Things (IoT). The IoT ecosystem is very large, and it includes smart interconnections among sensors and devices with applications in both the industrial world and customers' daily lives. As a unified standard for IoT is still under development, many challenges related to IoT must be discussed and addressed, especially those related to energy efficiency. This article tackles the challenge of energy efficiency in IoT from a novel perspective. It shows that instead of maximizing the QoS, which is generally energy costly, better energy efficiency can be achieved by targeting satisfactory QoS levels only. The approach aims to enhance energy efficiency while ensuring a desired QoS threshold. This is supported by a game theoretical solution concept referred to as the satisfaction equilibrium. Moreover, as IoT objects require self-configuring techniques to maintain the network scalability and flexibility, this article introduces fully distributed schemes in order to reach efficient satisfaction equilibria in both slow- and fast-fading channel contexts. The proposed schemes can also be adapted to achieve the maximum performance of IoT applications that desire the highest QoS levels. The performance of these algorithms is illustrated through a smart home use case scenario.
机译:互联对象的激增彻底改变了传统的互联网,催生了新兴的物联网(IoT)。物联网生态系统非常庞大,它包括传感器和设备之间的智能互连以及在工业界和客户日常生活中的应用。由于仍在开发物联网的统一标准,因此必须讨论和解决与物联网相关的许多挑战,尤其是与能效相关的挑战。本文从新颖的角度解决了物联网中能源效率的挑战。它表明,代替最大化通常耗能的QoS,可以通过仅针对令人满意的QoS级别来实现更好的能源效率。该方法旨在提高能源效率,同时确保所需的QoS阈值。这被称为满意度均衡的博弈理论解决方案概念所支持。此外,由于物联网对象需要自配置技术来维持网络的可扩展性和灵活性,因此本文介绍了完全分布式的方案,以便在慢速和快速衰落的信道环境中达到有效的满意度平衡。提出的方案也可以进行调整,以实现需要最高QoS级别的IoT应用程序的最大性能。通过智能家居用例场景说明了这些算法的性能。

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