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Amplitude clipping and iterative reconstruction of MIMO-OFDM signals with optimum equalization | IEEE Journals & Magazine | IEEE Xplore

Amplitude clipping and iterative reconstruction of MIMO-OFDM signals with optimum equalization


Abstract:

Multi-input multi-output orthogonal frequency division multiplexing (MIMO-OFDM) has become a promising candidate for next generation broadband wireless communications. Ho...Show More

Abstract:

Multi-input multi-output orthogonal frequency division multiplexing (MIMO-OFDM) has become a promising candidate for next generation broadband wireless communications. However, like a single-input single-output (SISO)-OFDM, one main disadvantage of the MIMO-OFDM is the high peak-to-average power ratio (PAPR), which can be reduced by using an amplitude clipping. In this paper, we propose clipped signal reconstruction methods for the MIMO-OFDMs with spatial diversity, such as space-time and space-frequency block codes (STBC/SFBC). The proposed methods are based on the technique called iterative amplitude reconstruction (IAR) for SISO-OFDM. It is shown that the IAR can be easily employed for the STBC-OFDM, but it cannot be directly applied to the SFBC-OFDM, because the transmitted sequences over different antennas are dependent due to the use of space-frequency code. We propose a new SFBC transmitter for clipped OFDM, which has approximately half the computational complexity of conventional SFBC-OFDM. The proposed clipping preserves the orthogonality of transmitted signals, and the clipped signals are iteratively recovered at the receiver. Further, we theoretically analyze the performance of IAR with optimum equalization, and also provide highly accurate channel estimation of the OFDM with amplitude clipping. Simulation results show that the proposed receivers effectively recover contaminated OFDM signals with a moderate computational complexity.
Published in: IEEE Transactions on Wireless Communications ( Volume: 8, Issue: 1, January 2009)
Page(s): 268 - 277
Date of Publication: 20 February 2009

ISSN Information:

Citations are not available for this document.

I. Introduction

In Various fora and organizations for wireless research, such as the Wireless World Research Forum (WWRF) and International Telecommunication Union (ITU), there have been active discussions about 4G or beyond 3G systems to be deployed around 2010 [1], [2]. Multi-input multi-output orthogonal frequency-division multiplexing (MIMO-OFDM) has drawn significant interests as a candidate for the 4G or beyond 3G modulation techniques, due to the high bandwidth efficiency and the robustness against multipath fading channels [4]–[6]. However, MIMO-OFDM, like a single-input single-output (SISO)-OFDM, has an inherent drawback of high peak-to-average power ratio (PAPR). High PAPR requires large dynamic range of the transmit power amplifier and reduces the power efficiency, and thus the cost of transmitter is increased and the battery life time is decreased.

Cites in Papers - |

Cites in Papers - IEEE (51)

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