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      KCI등재 SCOPUS

      Particle Swarm Optimization-based dummy sub-carriers insertion for peak to average power ratio reduction in OFDM systems

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      https://www.riss.kr/link?id=A108570551

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      다국어 초록 (Multilingual Abstract)

      Orthogonal Frequency Division Multiplexing (OFDM) is the best choice for wireless and wired high data rate communications. The OFDM system has many advantages such as high spectral efficiency, robustness to channel fading, and immunity to impulse inte...

      Orthogonal Frequency Division Multiplexing (OFDM) is the best choice for wireless and wired high data rate communications. The OFDM system has many advantages such as high spectral efficiency, robustness to channel fading, and immunity to impulse interference. However, it has a main drawback, which is the Peak to Average Power Ratio (PAPR). Selecting Mapping (SLM) and Partial Transmit Sequences (PTS) are the two essential techniques for reducing the PAPR; however, they need to send side information to indicate how the transmitter generates signals. In this paper, Particle Swarm Optimization (PSO)-based dummy sub-carriers are inserted with the data to reduce PAPR without transmitting side information. The incorporation of PSO-based Dummy Sub-carriers Insertion (DSI) method on this system is performed by measuring the PAPR at the IFFT output (Inverse Fast Fourier Transform) after adding 6 adaptive sub-carrier sequences to the input data of IFFT. The PSO-based dummy algorithm decides to send the data once the PAPR of this data sequence and dummy sub-carrier is under a specific threshold. Using MATLAB as a mathematical simulation tool, simulation results are presented for a standard OFDM network model. The network model has been simulated in an Additive White Gaussian Noise (AWGN) channel environment to investigate PAPR and Bit-Error Rate (BER) performance. The simulation results show that the dummy sequence based on PSO reduces PAPR down to 4 dB compared to a conventional OFDM system and down to 3 dB compared with the clipping technique for the same BER performance.

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      참고문헌 (Reference) 논문관계도

      1 M. Jiang, "Stochastic convergence analysis and parameter selection of the standard particle swarm optimization algorithm" 102 (102): 8-16, 2007

      2 D. Wulich, "Reduction of peak to mean ratio of multicarrier modulation using cyclic coding" 32 (32): 432-, 1996

      3 Y. Rahmatallah, "Peak-to-average power ratio reduction in OFDM systems: A survey and taxonomy" 15 (15): 1567-1592, 2013

      4 Z. Kollár, "PAPR reduction of FBMC by clipping and its iterative compensation" 2012 : 2012

      5 S. Prasad, "PAPR reduction in OFDM using scaled particle swarm optimisation based partial transmit sequence technique" 2019 (2019): 3460-3468, 2019

      6 Mehdi Hosseinzadeh Aghdama ; Abbas Ali Sharifi, "PAPR reduction in OFDM systems: An efficient PTS approach based on particle swarm optimization" 한국통신학회 5 (5): 178-181, 2019

      7 S. Zhou, "Ofdm Basics" Wiley Telecom 2014

      8 S.H. Muller, "OFDM with reduced peak-to-average power ratio by optimum combination of partial transmit sequences" 33 (33): 368-369, 1997

      9 R.D. Van Nee, "OFDM for Wireless Multimedia Communications" Artech House 2000

      10 M.S. Sohail, "Low-complexity particle swarm optimization for time-critical applications"

      1 M. Jiang, "Stochastic convergence analysis and parameter selection of the standard particle swarm optimization algorithm" 102 (102): 8-16, 2007

      2 D. Wulich, "Reduction of peak to mean ratio of multicarrier modulation using cyclic coding" 32 (32): 432-, 1996

      3 Y. Rahmatallah, "Peak-to-average power ratio reduction in OFDM systems: A survey and taxonomy" 15 (15): 1567-1592, 2013

      4 Z. Kollár, "PAPR reduction of FBMC by clipping and its iterative compensation" 2012 : 2012

      5 S. Prasad, "PAPR reduction in OFDM using scaled particle swarm optimisation based partial transmit sequence technique" 2019 (2019): 3460-3468, 2019

      6 Mehdi Hosseinzadeh Aghdama ; Abbas Ali Sharifi, "PAPR reduction in OFDM systems: An efficient PTS approach based on particle swarm optimization" 한국통신학회 5 (5): 178-181, 2019

      7 S. Zhou, "Ofdm Basics" Wiley Telecom 2014

      8 S.H. Muller, "OFDM with reduced peak-to-average power ratio by optimum combination of partial transmit sequences" 33 (33): 368-369, 1997

      9 R.D. Van Nee, "OFDM for Wireless Multimedia Communications" Artech House 2000

      10 M.S. Sohail, "Low-complexity particle swarm optimization for time-critical applications"

      11 V. Sudha, "Low-complexity modified SLM method for PAPR reduction in OFDM systems" IEEE 1324-1328, 2015

      12 V. Sudha, "Low complexity PAPR reduction in SLMOFDM system using time domain sequence separation" 57 (57): 3111-3115, 2018

      13 A. Abdalmunam, "Implementation of particle swarm optimization and genetic algorithms to tackle the PAPR problem of OFDM system" 767 (767): 012030-, 2020

      14 H.-G. Ryu, "Dummy sequence insertion (DSI) for PAPR reduction in the OFDM communication system" 50 (50): 89-94, 2004

      15 F. Van Den Bergh, "An Analysis of Particle Swarm Optimizers" University of Pretoria 2007

      16 A.A. Sharifi, "A novel hybrid genetic algorithm to reduce the peak-to-average power ratio of OFDM signals" 80 : 106498-, 2019

      17 H. Emami, "A novel bio-inspired optimization algorithm for solving peak-to-average power ratio problem in DC-biased optical systems" 60 : 102383-, 2020

      18 M. Hosseinzadeh Aghdam, "A novel ant colony optimization algorithm for PAPR reduction of OFDM signals" 34 (34): e4648-, 2021

      19 R. Eberhart, "A new optimizer using particle swarm theory" IEEE 39-43, 1995

      20 B.H. Nguyen, "A new binary particle swarm optimization approach: momentum and dynamic balance between exploration and exploitation" 2019

      21 P. Varahram, "A low complexity partial transmit sequence scheme by use of dummy signals for PAPR reduction in OFDM systems" 56 (56): 2416-2420, 2010

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