In-band full-duplex wireless communication (FD), i.e. transmission and reception at the same time at the same frequency, is an emerging research topic, driven by the increasing demand for mobile data traffic in the crowded radio spectrum. Besides promising up to twice the spectral efficiency, additional advantages are being explored. The main issue in FD is strong self-interference (SI) from the transmitter (TX) into the local receiver (RX). In typical links, over 90dB total SI-rejection is required to fully compete with half-duplex links. This rejection is achieved by combining SI-isolation and cancellation in different domains. This work shows that impairments in the radio components limit the achievable SI-cancellation in the digital dom...
With the wireless technology evolving quickly, so does the demand of speed and efficiency. This make...
In-band full duplex (IBFD) for increased spectral efficiency but is limited by self-interference (SI...
By allowing simultaneous transmit and receive operations in the same frequency band, In-Band Full-Du...
In-band full-duplex (FD) wireless, i.e., simultaneous transmission and reception at the same frequen...
In-band full-duplex (FD) wireless communication, i.e. simultaneous transmission and reception at the...
Current wireless communication systems use frequency-domain duplexing (FDD) or time-domain duplexing...
Thesis (Ph.D.)--University of Washington, 2017-06The continued demand for higher levels of wireless ...
In-band full-duplex (FD) wireless communication allows the simultaneous transmission and reception o...
Due to the tremendous increase in wireless data traffic, one of the major challenges for future wire...
This paper describes a frequency-agile RF front-end in 65nm CMOS targeting short-range full-duplex w...
Full-duplex (FD) wireless – simultaneous transmission and reception on the same frequency &#x...
Abstract The challenges with full-duplex (FD) transceiver implementation and transmission in small a...
This paper presents a baseband model and an enhanced implementation of the wireless full duplex anal...
Full duplex (FD) radios are the next generation wireless paradigm to answer the growing demand of hi...
In the recent years, a significant portion of the research within the field of wireless communications...
With the wireless technology evolving quickly, so does the demand of speed and efficiency. This make...
In-band full duplex (IBFD) for increased spectral efficiency but is limited by self-interference (SI...
By allowing simultaneous transmit and receive operations in the same frequency band, In-Band Full-Du...
In-band full-duplex (FD) wireless, i.e., simultaneous transmission and reception at the same frequen...
In-band full-duplex (FD) wireless communication, i.e. simultaneous transmission and reception at the...
Current wireless communication systems use frequency-domain duplexing (FDD) or time-domain duplexing...
Thesis (Ph.D.)--University of Washington, 2017-06The continued demand for higher levels of wireless ...
In-band full-duplex (FD) wireless communication allows the simultaneous transmission and reception o...
Due to the tremendous increase in wireless data traffic, one of the major challenges for future wire...
This paper describes a frequency-agile RF front-end in 65nm CMOS targeting short-range full-duplex w...
Full-duplex (FD) wireless – simultaneous transmission and reception on the same frequency &#x...
Abstract The challenges with full-duplex (FD) transceiver implementation and transmission in small a...
This paper presents a baseband model and an enhanced implementation of the wireless full duplex anal...
Full duplex (FD) radios are the next generation wireless paradigm to answer the growing demand of hi...
In the recent years, a significant portion of the research within the field of wireless communications...
With the wireless technology evolving quickly, so does the demand of speed and efficiency. This make...
In-band full duplex (IBFD) for increased spectral efficiency but is limited by self-interference (SI...
By allowing simultaneous transmit and receive operations in the same frequency band, In-Band Full-Du...