Chapter 30
5G: Performance on the Enhancement
of the Asymmetric Arithmetic Coding
with Space Time Frequency Block
Coding MIMO
Mohamad Zuhairi Saleh, Noorazlina Mohamid Salih, Hazwani Mohd Radzi,
Mohd Shahrizan Mohd Said, Izanoordina Ahmad, and Azlina Idris
Abstract The rising demand of 5G technology in the year 2020 has a priority to
provide high-speed user capacity with minimum probability of error (noise interference) in wireless communication services. The 5G system model should deploy a
unique channel coding technique so-called the enhancement asymmetric arithmetic
coding (EAAC) to compress the data and gain signal efficiency as new-found block
codes that is related to the traditional arithmetic coding (AC), at which the received
signal is expected to have an ultrafast speed transmission, good voice quality, and
high network capacity. The EAAC coding technique is embedded with multiple input
multiple output (MIMO) system which is formulated to the increase spatial diversity
and is considered in measuring the performance of the space–time–frequency block
codes (STFBC) system model that supports wireless communication technology
efficiently.
M. Z. Saleh · N. M. Salih (B) · H. M. Radzi
Universiti Kuala Lumpur Malaysian Institute of Marine Engineering Technology,
Lumut, Malaysia
e-mail: noorazlinams@unikl.edu.my
M. Z. Saleh
e-mail: zuhairi23joey@gmail.com
H. M. Radzi
e-mail: hazwani@unikl.edu.my
M. S. M. Said
Universiti Teknologi MARA Cawangan Perak, Seri Iskandar, Malaysia
e-mail: mohds665@uitm.edu.my
I. Ahmad
Electronics Technology Section, Universiti Kuala Lumpur British Malaysian Institute,
Gombak, Malaysia
e-mail: izanoordina@unikl.edu.my
A. Idris
Wireless Communication Technology (WiCOT), Faculty of Electrical Engineering,
Universiti Teknologi MARA, Shah Alam, Selangor, Malaysia
e-mail: azlina831@uitm.edu.my
© The Author(s), under exclusive license to Springer Nature Switzerland AG 2021
A. Ismail et al. (eds.), Advanced Engineering for Processes and Technologies II,
Advanced Structured Materials 147,
https://doi.org/10.1007/978-3-030-67307-9_30
315
5G: Performance on the Enhancement
of the Asymmetric Arithmetic Coding
with Space Time Frequency Block
Coding MIMO
Mohamad Zuhairi Saleh, Noorazlina Mohamid Salih, Hazwani Mohd Radzi,
Mohd Shahrizan Mohd Said, Izanoordina Ahmad, and Azlina Idris
Abstract The rising demand of 5G technology in the year 2020 has a priority to
provide high-speed user capacity with minimum probability of error (noise interference) in wireless communication services. The 5G system model should deploy a
unique channel coding technique so-called the enhancement asymmetric arithmetic
coding (EAAC) to compress the data and gain signal efficiency as new-found block
codes that is related to the traditional arithmetic coding (AC), at which the received
signal is expected to have an ultrafast speed transmission, good voice quality, and
high network capacity. The EAAC coding technique is embedded with multiple input
multiple output (MIMO) system which is formulated to the increase spatial diversity
and is considered in measuring the performance of the space–time–frequency block
codes (STFBC) system model that supports wireless communication technology
efficiently.
M. Z. Saleh · N. M. Salih (B) · H. M. Radzi
Universiti Kuala Lumpur Malaysian Institute of Marine Engineering Technology,
Lumut, Malaysia
e-mail: noorazlinams@unikl.edu.my
M. Z. Saleh
e-mail: zuhairi23joey@gmail.com
H. M. Radzi
e-mail: hazwani@unikl.edu.my
M. S. M. Said
Universiti Teknologi MARA Cawangan Perak, Seri Iskandar, Malaysia
e-mail: mohds665@uitm.edu.my
I. Ahmad
Electronics Technology Section, Universiti Kuala Lumpur British Malaysian Institute,
Gombak, Malaysia
e-mail: izanoordina@unikl.edu.my
A. Idris
Wireless Communication Technology (WiCOT), Faculty of Electrical Engineering,
Universiti Teknologi MARA, Shah Alam, Selangor, Malaysia
e-mail: azlina831@uitm.edu.my
© The Author(s), under exclusive license to Springer Nature Switzerland AG 2021
A. Ismail et al. (eds.), Advanced Engineering for Processes and Technologies II,
Advanced Structured Materials 147,
https://doi.org/10.1007/978-3-030-67307-9_30
315
