A study on the channel bonding in IoT networks: Requirements, applications, and challenges

Author:

Kandar Debdatta1ORCID,Chyne Phidahunlang12ORCID,Nath Sur Samarendra3ORCID,Nandi Sukumar4

Affiliation:

1. Department of Information Technology North‐Eastern Hill University Shillong India

2. Department of Computer Science National Institute of Technology, Meghalaya Shillong India

3. Department of Electronics and Communication Engineering, Sikkim Manipal Institute of Technology Sikkim Manipal University Rangpo Sikkim India

4. Department of Computer Science Indian Institute of Technology Guwahati Guwahati India

Abstract

SummaryThe most well‐known sort of remote Internet connection is wireless local area networks (WLANs) due to its unsophisticated operation and deployment. Subsequently, the quantity of gadgets getting to the Internet through WLANs, for example, PCs, cell phones, or wearables, is expanding radically at the equivalent time that applications' throughput necessities do. To provide wireless networks with supplementary spectral resources, the researchers are considering the aggregation of frequency spectrums in licensed, unlicensed, and shared access (SA) bands. Channel aggregation/channel bonding (CA/CB) techniques accumulate quite a few channels together as one channel for the purpose of achieving better bandwidth utilization. In this study, we focus on reliable CA/CB techniques in different wireless networks. CA/CB procedures are utilized for empowering higher information rates by transmitting in more extensive channels, accordingly expanding range proficiency with the assured secure channel for communication. We also discuss the spectral scarcity issues in today's wireless IoT network. This paper presents an extensive survey on CA/CB procedures and methods, issues and challenges, and open research areas related to IoT devices. We analyze the performance of channel CA/CB strategies in the different wireless networks too.

Publisher

Wiley

Subject

Electrical and Electronic Engineering,Computer Networks and Communications

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