[[abstract]]A novel I/Q (in-phase/quadrature) imbalance compensation scheme is proposed for quadrature-signal-mixing radio-frequency transceivers, employing either the direct-conversion architecture or the low-intermediate-frequency architecture. An adaptive DSP (digital signal processing) algorithm is developed for the proposed scheme, to on-line compensate the I/Q imbalance in both the transmitter and the receiver simultaneously, which is impossible for the other existing I/Q imbalance compensation schemes so far. In addition, the proposed scheme requires little extra calibration hardware, suffers no hidden errors introduced by the calibration circuitry, and is thus highly suitable for implementation in practical applications.[[fileno]]20...
The implementation of orthogonal frequency division multiplexing (OFDM)-based physical layers suffer...
A low cost frequency-dependent (FD) I/Q imbalance self-compensation scheme is investigated in this p...
The implementation challenges in building compact and low-cost radios for future wireless systems ar...
The recent interest in I/Q signal processing based transceivers has resulted in a new domain of rese...
Abstract—Although the quadrature mixing radio front-end offers an attractive way to perform frequenc...
Abstract—Despite the advantages that quadrature mixing offers to radio front-ends, its practical use...
The use of direct-conversion receivers has widely been considered for digital cellular and radio mes...
The implementation of OFDM-based systems suffers from impairments such as in-phase and quadrature-ph...
It is well known that dual-branch receivers suffer from in-phase (I) and quadrature (Q) imbalance pr...
Includes bibliographical references (pages 47-48).There are many undesired attributes caused by impe...
In-phase/quadrature (I/Q) imbalance is one of the main sources of distortion in RF modulators. In th...
In-phase/quadrature (I/Q) signal processing is a fundamental tool in processing of bandpass signals....
[[abstract]]In this paper, we consider estimation and compensation of the I/Q imbalance generated by...
This paper presents an adaptive scheme in overcoming signal distortion, caused by I/Q imbalance and ...
This book provides a unified IQ imbalance model and systematically reviews the existing estimation a...
The implementation of orthogonal frequency division multiplexing (OFDM)-based physical layers suffer...
A low cost frequency-dependent (FD) I/Q imbalance self-compensation scheme is investigated in this p...
The implementation challenges in building compact and low-cost radios for future wireless systems ar...
The recent interest in I/Q signal processing based transceivers has resulted in a new domain of rese...
Abstract—Although the quadrature mixing radio front-end offers an attractive way to perform frequenc...
Abstract—Despite the advantages that quadrature mixing offers to radio front-ends, its practical use...
The use of direct-conversion receivers has widely been considered for digital cellular and radio mes...
The implementation of OFDM-based systems suffers from impairments such as in-phase and quadrature-ph...
It is well known that dual-branch receivers suffer from in-phase (I) and quadrature (Q) imbalance pr...
Includes bibliographical references (pages 47-48).There are many undesired attributes caused by impe...
In-phase/quadrature (I/Q) imbalance is one of the main sources of distortion in RF modulators. In th...
In-phase/quadrature (I/Q) signal processing is a fundamental tool in processing of bandpass signals....
[[abstract]]In this paper, we consider estimation and compensation of the I/Q imbalance generated by...
This paper presents an adaptive scheme in overcoming signal distortion, caused by I/Q imbalance and ...
This book provides a unified IQ imbalance model and systematically reviews the existing estimation a...
The implementation of orthogonal frequency division multiplexing (OFDM)-based physical layers suffer...
A low cost frequency-dependent (FD) I/Q imbalance self-compensation scheme is investigated in this p...
The implementation challenges in building compact and low-cost radios for future wireless systems ar...