Performance analysis of antenna selection techniques in MIMO-OFDM system with hardware impairments: Energy efficiency perspective

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Abstract

In this paper we propose a new MIMO-OFDM model in which we consider various antenna selection techniques like Bulk selection and Per-subcarrier selection etc. with hardware impairments such as non-linearties of amplifiers, quantization noise, phase noise and I-Q imbalance etc. As we know that the transceiver hardware impairments limit the channel capacity and the energy efficiency of MIMO-OFDM system, so we can not neglect the fundamental impacts of these hardware impairments {Kappa ϵ(0.05 0.1)} on the energy efficiency in the high SNR domain. Therefore we analyze the Energy Efficiency of Bulk and Per-subcarrier antenna selection techniques with or without hardware impairments. It has been observed that the energy efficiency decreases as the value of these hardware impairments increases. As we compared the Bulk antenna selection with the Per-subcarrier antenna selection scheme, the Per-subcarrier antenna selection requires more number of RF (radio frequency) chains and transmits power in comparison to the Bulk selection. Due to this, the Bulk antenna selection technique is more energy efficient than Per-subcarrier antenna selection.

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APA

Singal, A., & Kedia, D. (2018, August 1). Performance analysis of antenna selection techniques in MIMO-OFDM system with hardware impairments: Energy efficiency perspective. International Journal of Electrical and Computer Engineering. Institute of Advanced Engineering and Science. https://doi.org/10.11591/ijece.v8i4.pp2272-2279

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