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Model for autonomous agents in machine-to-machine navigation networks

机译:机器对机器导航网络中自主代理的模型

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摘要

Machine-to-machine (M2M) is an evolving architecture and tends to provide enormous services through the swarm presence of the networked devices. Localization is one of those services. Previous localization techniques require complex computation that is not suitable and affordable in such architecture. Moreover, integrating intelligent multiagents on these ubiquitous devices makes the network more independent and reactive requiring for a less complex localization model. This paper reviews the present localization techniques and discusses their infeasibility for M2M communication while proposing a mathematical model that is derived from Anderson model for the distributed structure of machine-type-communication network involving autonomous agents. This paper has made an attempt to use the property of Anderson model that structures the distributed objects. This paper also classifies autonomous agents according to their functionalities in a navigational network. Recently, Anderson model have been customized for implication of optical communication; in this paper, the proposed mathematical model involves intelligent agents for localization that aim to reduce complexity of positioning computations for nodes having restricted computational resources and battery life, which are the main characteristics of M2M communication.
机译:机器对机器(M2M)是一个不断发展的体系结构,它倾向于通过网络设备的大量存在提供大量服务。本地化是这些服务之一。先前的本地化技术需要复杂的计算,而这种计算在这种体系结构中是不合适的并且负担不起。此外,在这些无处不在的设备上集成智能多智能体使网络更加独立和反应灵敏,从而需要一个不太复杂的本地化模型。本文回顾了目前的本地化技术,并讨论了它们不适用于M2M通信的问题,同时提出了一个从安德森模型中得出的数学模型,用于涉及自治代理的机器类型通信网络的分布式结构。本文尝试使用构造分布式对象的Anderson模型的属性。本文还根据自治代理在导航网络中的功能进行分类。最近,安德森(Anderson)模型已被定制以用于光通信。在本文中,所提出的数学模型涉及用于定位的智能代理,旨在降低具有有限计算资源和电池寿命的节点的定位计算的复杂性,这是M2M通信的主要特征。

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