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Frequency domain equalization for single-carrier broadband wireless systems

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TLDR
This article surveys frequency domain equalization (FDE) applied to single-carrier (SC) modulation solutions and discusses similarities and differences of SC and OFDM systems and coexistence possibilities, and presents examples of SC-FDE performance capabilities.
Abstract
Broadband wireless access systems deployed in residential and business environments are likely to face hostile radio propagation environments, with multipath delay spread extending over tens or hundreds of bit intervals. Orthogonal frequency-division multiplex (OFDM) is a recognized multicarrier solution to combat the effects of such multipath conditions. This article surveys frequency domain equalization (FDE) applied to single-carrier (SC) modulation solutions. SC radio modems with frequency domain equalization have similar performance, efficiency, and low signal processing complexity advantages as OFDM, and in addition are less sensitive than OFDM to RF impairments such as power amplifier nonlinearities. We discuss similarities and differences of SC and OFDM systems and coexistence possibilities, and present examples of SC-FDE performance capabilities.

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Citations
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Dissertation

Investigation of advanced modulation and multiplexing schemes for high-capacity optical transmission

An Li
TL;DR: Using nanofiltration membranes for the recovery of phosphorous with a second type of technology for the recoverability of nitrogen is suggest to be a viable process.
Proceedings ArticleDOI

Transmit and receive antenna subset selection for MIMO SC-FDE in frequency selective channels

TL;DR: This contribution studies antenna subset selection at transmitter-and receiver-side for the MIMO Single Carrier (SC) scheme with Frequency Domain Equalization (FDE) in frequency selective channels.
Proceedings ArticleDOI

Single-carrier distributed antenna network downlink using joint transmit/receive diversity

TL;DR: This paper investigates, by computer simulation, the bit error rate (BER) distribution of the SC-DAN downlink, and discusses the impact of the number of distributed antennas involved in FD-STBC-JTRD on the BER outage probability.
Proceedings ArticleDOI

Highly Efficient Sparse Multipath Channel Estimator with Optimal Chu-sequence Premable for MIMO Frequency-Domain DFE Receiver

TL;DR: This algorithm exploits the optimal MIMO preamble based on repeated phase-rotated Chu sequences, and iteratively estimates the number and positions of the sparsely spaced multipath components by using the generalized AIC criterion (GAIC).
Journal ArticleDOI

An Efficient Cyclic Prefix Reconstruction Technique for MIMO Single-Carrier Frequency-Domain Equalization

TL;DR: By applying the proposed method to MIMO SC-FDE system with insufficient cyclic prefix (CP), the method can significantly improve its error performance, obtaining both the benefits of multiplexing gain and spectral efficiency gain.
References
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Book

Adaptive Filter Theory

Simon Haykin
TL;DR: In this paper, the authors propose a recursive least square adaptive filter (RLF) based on the Kalman filter, which is used as the unifying base for RLS Filters.
Journal ArticleDOI

Analysis and Simulation of a Digital Mobile Channel Using Orthogonal Frequency Division Multiplexing

TL;DR: The analysis and simulation of a technique for combating the effects of multipath propagation and cochannel interference on a narrow-band digital mobile channel using the discrete Fourier transform to orthogonally frequency multiplex many narrow subchannels, each signaling at a very low rate, into one high-rate channel is discussed.
Journal ArticleDOI

BER sensitivity of OFDM systems to carrier frequency offset and Wiener phase noise

TL;DR: In this contribution the transmission of M-PSK and M-QAM modulated orthogonal frequency division multiplexed (OFDM) signals over an additive white Gaussian noise (AWGN) channel is considered and the degradation of the bit error rate is evaluated.
Journal ArticleDOI

Polyphase codes with good periodic correlation properties (Corresp.)

TL;DR: This correspondence describes the construction of complex codes of the form exp i \alpha_k whose discrete circular autocorrelations are zero for all nonzero lags.