MIMO OFDM is a very promising technique for future wireless communication systems. By applying direct conversion architecture, low-cost, low-power, small size, and flexible implementation of MIMO OFDM systems can be realized. However, the performance of direct conversion architecture-based MIMO OFDM systems can be seriously affected by RF impairments incling carrier frequency offset (CFO) and I/Q-imbalance. While OFDM is sensitive to CFO, direct conversion architecture is sensitive to I/Q imbalance. Such RF impairments aggravate as the carrier frequency becomes higher for example, beyond 60 GHz. To achieve the desired high performance of MIMO OFDM, such RF impairments have to be compensated for. In this paper, the joint compensation of CFO,...
The influence, digital estimation and compensation of IQ mismatch at both transmitter (TX) and recei...
In this paper, we analyzed the feasibility of using a virtual carrier based carrier frequency offset...
Two types of radio-frequency front-end imperfections, that is, carrier frequency offset and the inph...
A very promising technical approach for future wireless communication systems is to combine MIMO OFD...
MIMO OFDM is a key technique for achieving high capacity in future wireless communi-cation systems. ...
MIMO OFDM is a key technique for achieving high data rate in future wireless communication systems. ...
Nowadays, direct-conversion radio frequency (RF) receivers become more appealing due to its cost adv...
Conventional OFDM communications systems employ a super-heterodyne architecture for RF-to-baseband c...
It is well known that Orthogonal Frequency Division Multiplexing (OFDM) systems are sensitive to car...
Abstract This paper aims to improve the performance of estimation and compensation for both the tra...
The influence, digital estimation and compensation of IQ mismatch at both transmitter (TX) and recei...
The influence, digital estimation and compensation of IQ mismatch at both transmitter (TX) and recei...
The influence, digital estimation and compensation of IQ mismatch at both transmitter (TX) and recei...
The influence, digital estimation and compensation of IQ mismatch at both transmitter (TX) and recei...
MIMO OFDM is a very promising technique for high-speed wireless transmission. By applying the Direct...
The influence, digital estimation and compensation of IQ mismatch at both transmitter (TX) and recei...
In this paper, we analyzed the feasibility of using a virtual carrier based carrier frequency offset...
Two types of radio-frequency front-end imperfections, that is, carrier frequency offset and the inph...
A very promising technical approach for future wireless communication systems is to combine MIMO OFD...
MIMO OFDM is a key technique for achieving high capacity in future wireless communi-cation systems. ...
MIMO OFDM is a key technique for achieving high data rate in future wireless communication systems. ...
Nowadays, direct-conversion radio frequency (RF) receivers become more appealing due to its cost adv...
Conventional OFDM communications systems employ a super-heterodyne architecture for RF-to-baseband c...
It is well known that Orthogonal Frequency Division Multiplexing (OFDM) systems are sensitive to car...
Abstract This paper aims to improve the performance of estimation and compensation for both the tra...
The influence, digital estimation and compensation of IQ mismatch at both transmitter (TX) and recei...
The influence, digital estimation and compensation of IQ mismatch at both transmitter (TX) and recei...
The influence, digital estimation and compensation of IQ mismatch at both transmitter (TX) and recei...
The influence, digital estimation and compensation of IQ mismatch at both transmitter (TX) and recei...
MIMO OFDM is a very promising technique for high-speed wireless transmission. By applying the Direct...
The influence, digital estimation and compensation of IQ mismatch at both transmitter (TX) and recei...
In this paper, we analyzed the feasibility of using a virtual carrier based carrier frequency offset...
Two types of radio-frequency front-end imperfections, that is, carrier frequency offset and the inph...