PAPR Performance Analysis of low Complexity SLM for Various Phase Sequences in MIMO-OFDM System
Srinu Pyla1, K. Padma Raju2, N. Balasubrahmanyam3

1Srinu Pyla, Department of Engineering, and Communication Engineering, Gayatri Vidya Parishad College of Engineering (A), Visakhapatnam, India.
2K. Padma Raju, Department of Engineering, and Communication Engineering, J. N. T. University, Kakinada, Kakinada, India.
3N. Balasubrahmanyam, Department of Engineering, and Communication Engineering, Gayatri Vidya Parishad College of Engineering (A), Visakhapatnam, India. 

Manuscript received on 11 March 2019 | Revised Manuscript received on 17 March 2019 | Manuscript published on 30 July 2019 | PP: 4347-4353 | Volume-8 Issue-2, July 2019 | Retrieval Number: B2908078219/19©BEIESP | DOI: 10.35940/ijrte.B2908.078219
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© The Authors. Blue Eyes Intelligence Engineering and Sciences Publication (BEIESP). This is an open access article under the CC-BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/)

Abstract: Multiple Input Multiple Output Orthogonal Frequency Division Multiplexing (MIMO OFDM) is a key technology for contemporary communication systems due to its spectral efficiency, higher data rates, better diversity gain, good link reliability and both inter symbol interference (ISI) and multipath fading free transmission. However, due to the presence of OFDM, MIMO-OFDM suffers from high peak to average power ratio (PAPR). Even though, several schemes are available to mitigate PAPR, there is no standard solution. Selective Mapping (SLM) significantly reduces the PAPR in OFDM systems at the cost of computational complexity (CC). The CC of SLM can be reduced by proper design of SLM. This paper considers a low complexity SLM (LC SLM) scheme in which both the CC and length of the index of selected phase sequence are significantly reduced. The PAPR of an SLM-OFDM depends on the number of subcarriers in OFDM, the number of candidate blocks in SLM and selected phase sequence and this paper investigate various phase sequences and analyses their PAPR performance. Simulation results show the superior performance of Riemann sequence over the other phase sequences.
Keywords: LC SLM, MIMO-OFDM, PAPR, Phase Sequences, Riemann Sequence.

Scope of the Article: Measurement & Performance Analysis