Adaptive RF canceller for transmit-receive isolation improvement

KE Kolodziej, JG McMichael… - 2014 IEEE Radio and …, 2014 - ieeexplore.ieee.org
KE Kolodziej, JG McMichael, BT Perry
2014 IEEE Radio and Wireless Symposium (RWS), 2014ieeexplore.ieee.org
For effective operation, Simultaneous Transmit And Receive (STAR) systems require high
isolation between the transmitted signals and the receiver input, the absence of which can
lead to the saturation of a receiver's front end. This paper presents an adaptive RF canceller
used to improve isolation. The canceller is configured as an RF tapped delay line with four
taps, each with independent amplitude and phase weights that are tuned by a Dithered
Linear Search algorithm. This canceller produces 30 dB of signal cancellation over a 30 …
For effective operation, Simultaneous Transmit And Receive (STAR) systems require high isolation between the transmitted signals and the receiver input, the absence of which can lead to the saturation of a receiver's front end. This paper presents an adaptive RF canceller used to improve isolation. The canceller is configured as an RF tapped delay line with four taps, each with independent amplitude and phase weights that are tuned by a Dithered Linear Search algorithm. This canceller produces 30 dB of signal cancellation over a 30 MHz bandwidth centered at 2.45 GHz in an isolated environment. When combined with a high-isolation antenna, an overall STAR system isolation of 90 dB is achieved, while also maintaining omni-directional transmit and receive antenna patterns.
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