From 2G to 4G Mobile Network: Architecture and Key Performance Indicators

10/02/2022
by   Hamza Kheddar, et al.
0

The second-generation (2G) mobile systems were developed in response to the growing demand for a system that met mobile communication demands while also providing greater interoperability with other systems. International organizations were crucial in the development of a system that would offer better services, be more transparent, and be more interoperable with other networks. The aim of having a single set of standards for networks worldwide was sadly not realized by the 2G network standards. The third generation (3G) was born. It was called the universal terrestrial mobile system (UMTS), which is European telecommunications standards institute (ETSI) driven. IMT-2000 is the international telecommunication union-telecommunication standardization sector (ITU-T) name for the 3G network. Wide-band code division multiple access (WCDMA) is the air interface technology for the UMTS. This platform offers many services that are based on the Internet, along with video calling, imaging, etc. Further advancements to mobile network technology led to long term evolution (LTE), a technology referred to as 4G. The primary goal of LTE was to improve the speed and capacity of mobile networks while lowering latency. As we move to an ALL-IP system, mobile networks' design becomes much simpler. LTE uses orthogonal frequency division multiplexing (OFDM) in its air interface. This paper details all mentioned mobile generations, as well as all the differences between them in terms of hardware and software architectures.

READ FULL TEXT

page 7

page 13

page 20

research
08/01/2018

Standards-Based Worldwide Semantic Interoperability for IoT

Global IoT services (GIoTS) are combining locally available IoT resource...
research
01/16/2019

Framework for a Perceptive Mobile Network using Joint Communication and Radar Sensing

In this paper, we develop a framework for a novel perceptive mobile/cell...
research
12/15/2020

Towards a 6G AI-Native Air Interface

Each generation of cellular communication systems is marked by a definin...
research
09/26/2020

Latency Analysis for IMT-2020 Radio Interface Technology Evaluation

The International Telecommunication Union (ITU) is currently deliberatin...
research
09/26/2018

Public-Safety LTE: Communication Services, Standardization Status, and Disaster-Resilient Architecture

The fifth-generation (5G) communication systems will enable enhanced mob...
research
07/07/2022

5G for Railways: the Next Generation Railway Dedicated Communications

To overcome increasing traffic, provide various new services, further en...
research
05/14/2022

The Sky Above The Clouds

Technology ecosystems often undergo significant transformations as they ...

Please sign up or login with your details

Forgot password? Click here to reset