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Medium Access Control Protocols for Cognitive Radio Ad Hoc Networks: A Survey

机译:认知无线电自组织网络的媒体访问控制协议:一项调查

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摘要

New wireless network paradigms will demand higher spectrum use and availability to cope with emerging data-hungry devices. Traditional static spectrum allocation policies cause spectrum scarcity, and new paradigms such as Cognitive Radio (CR) and new protocols and techniques need to be developed in order to have efficient spectrum usage. Medium Access Control (MAC) protocols are accountable for recognizing free spectrum, scheduling available resources and coordinating the coexistence of heterogeneous systems and users. This paper provides an ample review of the state-of-the-art MAC protocols, which mainly focuses on Cognitive Radio Ad Hoc Networks (CRAHN). First, a description of the cognitive radio fundamental functions is presented. Next, MAC protocols are divided into three groups, which are based on their channel access mechanism, namely time-slotted protocol, random access protocol and hybrid protocol. In each group, a detailed and comprehensive explanation of the latest MAC protocols is presented, as well as the pros and cons of each protocol. A discussion on future challenges for CRAHN MAC protocols is included with a comparison of the protocols from a functional perspective.
机译:新的无线网络范例将要求更高的频谱使用率和可用性,以应对新兴的数据密集型设备。传统的静态频谱分配策略会导致频谱稀缺,因此需要开发诸如认知无线电(CR)的新范例以及新协议和技术,以有效利用频谱。介质访问控制(MAC)协议负责识别自由频谱,调度可用资源以及协调异构系统和用户的共存。本文对最先进的MAC协议进行了充分的回顾,该协议主要关注认知无线电自组织网络(CRAHN)。首先,介绍认知无线电的基本功能。接下来,MAC协议根据其信道访问机制分为三类,即时隙协议,随机访问协议和混合协议。在每个小组中,将对最新的MAC协议进行详细而全面的说明,并介绍每种协议的优缺点。从功能的角度比较了CRAHN MAC协议的未来挑战,并进行了比较。

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