Simulation Analysis of 4G/5G OFDM Systems by Optimal Wavelets with BPSK Modulator

Author:

Domathoti Bullarao1ORCID,Ch Chengaiah2ORCID,Madala SrinivasaRao3ORCID,Berhanu Afework Aemro4ORCID,Rao Yamarthi Narasimha5ORCID

Affiliation:

1. Department of Computer Science & Engineering, Shree Institute of Technological Education, Tirupati, 517501 A P, India

2. Department of Electrical & Electronics Engineering, Sri Venkateswara University College of Engineering, Sri Venkateswara University, Tirupati 517501, India

3. Department of Computer Science & Engineering, PACE Institute of Technology and Science, Ongole, India

4. Department of Environmental Engineering, College of Biological and Chemical Engineering, Addis Ababa Science and Technology University, Addis Ababa, Ethiopia

5. Department of CSE, School of Computer Science and Engineering, VIT-AP University, Amaravati -522237, Andhra Pradesh, India

Abstract

LTE (Long-Term Evolution) is one of the appropriate technologies to sever the requirement of the IoT (Internet of Things) together with mobile UE (User Equipment), because of priority services, high data rate, low latency, etc. LTE has received OFDM for the transmission because it meets the necessity of LTE-like range flexibility and empowers the cost gainful responses for the wide carriers. LTE offers big-data values, allows spectrum reframing, reduces cost, etc. We proposed a 4G/5G adopted OFDM based on the multi-equalizer and BPSK (Binary-Phase Shift Keying). The BER (Bit Error Rate) of the system is reduced through the optimal wavelet coefficient at the transmitter side. This optimal wavelet coefficient is obtained by applying a DWT (Discrete Wavelet Transform) to the input signal through a BFF (Binary Firefly) algorithm. The serial to parallel process is carried out through the BPSK modulation. At last, the multi-equalizer like MMSE (Minimized Mean Square Error) and MLE (Maximum Likelihood) is applied to the OFDM model to reduce the BER. The system is analyzed using the parameter like SER (Symbol Error Rate), spectral efficiency, MSE (Mean Square Error), and BER. The proposed methodology provides a better outcome than the other existing approaches.

Publisher

Hindawi Limited

Subject

Electrical and Electronic Engineering,Instrumentation,Control and Systems Engineering

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