Full-Duplex (FD) communications allow the concurrent operation of the transmitter (TX) and receiver (RX) of a radio frequency (RF) transceiver at the same frequency channel offering multiple advantages for wireless communications such as increased bandwidth efficiency. However, the RX of an FD node should tolerate high TX self-interference (TX SI) power levels (~ 30 dBm) while detecting small desired RX signals (~ -100 dBm). The required dynamic range (DR) is addressed through a variety of TX SI rejection techniques in the RF, analog, and digital domains.This thesis presents an RF code-domain signal processing technique that increases the achieved rejection for FD radios. FD DR is enhanced by assigning orthogonal PN codes to the TX and RX s...
Full-duplex (FD) wireless – simultaneous transmission and reception on the same frequency &#x...
Today’s traditional radio systems exploit two techniques to transmit and receive which are Time Doma...
Recent works have demonstrated the feasibility and potential of full-duplex (FD) wireless systems to...
Full-Duplex (FD) communications allow the concurrent operation of the transmitter (TX) and receiver ...
Current wireless communication systems use frequency-domain duplexing (FDD) or time-domain duplexing...
Abstract The challenges with full-duplex (FD) transceiver implementation and transmission in small a...
In-band full-duplex wireless communication (FD), i.e. transmission and reception at the same time at...
In-band full-duplex (FD) wireless communication, i.e. simultaneous transmission and reception at the...
One of the major impediments in the design and operation of a full-duplex radio transceiver is the p...
Demand for mobile data traffic is projected to exceed 30 exabytes per month in 2020, representing an...
With the wireless technology evolving quickly, so does the demand of speed and efficiency. This make...
Frequency-division duplexing (FDD) radios are widely used in wireless communication standards and mu...
Full-duplex systems are expected to double the spectral efficiency compared to conventional half-dup...
In-band full duplex (IBFD) for increased spectral efficiency but is limited by self-interference (SI...
The demand of larger bandwidth and more efficient architectures have pushed many research groups to ...
Full-duplex (FD) wireless – simultaneous transmission and reception on the same frequency &#x...
Today’s traditional radio systems exploit two techniques to transmit and receive which are Time Doma...
Recent works have demonstrated the feasibility and potential of full-duplex (FD) wireless systems to...
Full-Duplex (FD) communications allow the concurrent operation of the transmitter (TX) and receiver ...
Current wireless communication systems use frequency-domain duplexing (FDD) or time-domain duplexing...
Abstract The challenges with full-duplex (FD) transceiver implementation and transmission in small a...
In-band full-duplex wireless communication (FD), i.e. transmission and reception at the same time at...
In-band full-duplex (FD) wireless communication, i.e. simultaneous transmission and reception at the...
One of the major impediments in the design and operation of a full-duplex radio transceiver is the p...
Demand for mobile data traffic is projected to exceed 30 exabytes per month in 2020, representing an...
With the wireless technology evolving quickly, so does the demand of speed and efficiency. This make...
Frequency-division duplexing (FDD) radios are widely used in wireless communication standards and mu...
Full-duplex systems are expected to double the spectral efficiency compared to conventional half-dup...
In-band full duplex (IBFD) for increased spectral efficiency but is limited by self-interference (SI...
The demand of larger bandwidth and more efficient architectures have pushed many research groups to ...
Full-duplex (FD) wireless – simultaneous transmission and reception on the same frequency &#x...
Today’s traditional radio systems exploit two techniques to transmit and receive which are Time Doma...
Recent works have demonstrated the feasibility and potential of full-duplex (FD) wireless systems to...