Today’s traditional radio systems exploit two techniques to transmit and receive which are Time Domain Duplexing (TDD) and Frequency Domain Duplexing (FDD). These two techniques allow bidirectional communication exploiting different frequencies or time-slots for the transmission and receiving operations. The ongoing research on wireless communications is currently active under in-band Full-Duplex (FD) radio communications, where co-located transmitter and receiver are operating simultaneously at the same central frequency doubling the spectral efficiency. The main technical challenge consists in suppressing the strong self-interference (SI) which is caused by the transmitting (TX) leakage into the receiving (RX) chain. Thus, FD tra...
In Band Full Duplex systems are getting popular to meet the increasing demand of consumers and strin...
This article presents a comprehensive survey of the literature on self-interference management schem...
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...
Abstract. In recent years by increasing the demands for communication services various technologies ...
The full-duplex (FD) technology enables future military radios to simultaneously transmit and receiv...
The demand of larger bandwidth and more efficient architectures have pushed many research groups to ...
In this thesis a novel RF-canceler for full-duplex operation is presented, designed and implemented....
This paper presents a baseband model and an enhanced implementation of the wireless full duplex anal...
In-band full-duplex (FD) wireless communication, i.e. simultaneous transmission and reception at the...
Military applications require more and different characteristics from in-band full-duplex radio tech...
The family of conventional half-duplex (HD) wireless systems relied on transmitting and receiving in...
In traditional wireless communication systems, transmission and reception are divided in either time...
Current wireless communication systems use frequency-domain duplexing (FDD) or time-domain duplexing...
With the wireless technology evolving quickly, so does the demand of speed and efficiency. This make...
In Band Full Duplex systems are getting popular to meet the increasing demand of consumers and strin...
This article presents a comprehensive survey of the literature on self-interference management schem...
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...
Abstract. In recent years by increasing the demands for communication services various technologies ...
The full-duplex (FD) technology enables future military radios to simultaneously transmit and receiv...
The demand of larger bandwidth and more efficient architectures have pushed many research groups to ...
In this thesis a novel RF-canceler for full-duplex operation is presented, designed and implemented....
This paper presents a baseband model and an enhanced implementation of the wireless full duplex anal...
In-band full-duplex (FD) wireless communication, i.e. simultaneous transmission and reception at the...
Military applications require more and different characteristics from in-band full-duplex radio tech...
The family of conventional half-duplex (HD) wireless systems relied on transmitting and receiving in...
In traditional wireless communication systems, transmission and reception are divided in either time...
Current wireless communication systems use frequency-domain duplexing (FDD) or time-domain duplexing...
With the wireless technology evolving quickly, so does the demand of speed and efficiency. This make...
In Band Full Duplex systems are getting popular to meet the increasing demand of consumers and strin...
This article presents a comprehensive survey of the literature on self-interference management schem...
Full-duplex (FD) wireless – simultaneous transmission and reception on the same frequency &#x...