PAPR Reduction in MIMO-OFDM Systems Using Low- Complexity Additive Signal Mixing

Author:

Kiambi Stephen, ,Mwangi Elijah,Kamucha George

Abstract

A MIMO-OFDM wireless communication technique possesses several advantages accrued from combining MIMO and OFDM techniques such as increased channel capacity and improved BER performance. This has made the technique very amiable to current and future generations of communication systems for high data-rate transmission. However, the technique also inherits the high PAPR problem associated with OFDM signals—a problem still requiring a practical solution. This work proposes a PAPR reduction algorithm for solving the problem of high PAPR in MIMO-OFDM systems. The proposed method uses a low-complexity signal mixing concept to combine the original transmit signal and a generated peak-cancelling signal. The computational complexity of the proposed method is O(M) , which is very much less than O(N log2 N) of the FFT algorithms. This is because M, which denotes the number of nonzero peakcancelling samples, is much less than N, the FFT window size. The proposed method was found to achieve high PAPR reductions while utilizing only a few nonzero peak-cancelling samples and it does not significantly change the power of the transmitted signal. For example, with M=5% of 256-point IFFT samples, corresponding to a data rate loss of 4.8%, a large PAPR reduction of 5.9 dB could be achieved at a small power loss of 0.09 dB. Compared with other methods proposed in literature, the proposed method was found to outperform them in terms of PAPR reductions and BER performance.

Publisher

Engineering and Technology Publishing

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Double Walsh-Hadamard Transform for Improved Efficiency in OFDM-IM;Lecture Notes in Electrical Engineering;2024

2. A Novel Phase Generation Mechanism for PAPR Reduction in SLM-based OFDM Systems;Proceedings of the 2023 11th International Conference on Computer and Communications Management;2023-08-04

3. OFDM and MIMO wireless communication performance measurement using enhanced selective mapping based partial transmit sequences;Optik;2023-02

4. Massive MIMO Beamforming Analysis for 5g Systems;2021 10th International Conference on Software and Information Engineering (ICSIE);2021-11-12

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