The design of an analogue RF front end for a multi-role radio
B.A. Sharp, P.A. Warr, Robert J. Wilkinson, J.P. McGeehan
Abstract
B.A. Sharp, P.A. Warr, Robert J. Wilkinson, J.P. McGeehan
Abstract
The drive towards a software-defined radio (SDR) in which much of the processing is controlled by reprogrammable digital hardware is placing new demands on the analogue RF front end. In order to facilitate multi-role multi-mode operation, this must impose the minimum of constraints on the parameters that can be defined in software, while still offering a performance which is at least as good as today's application-specific radios. This paper outlines some of the areas of research being carried out at the University of Bristol, funded by DERA, in an attempt to improve the flexibility and performance of the analogue RF front-end of a multi-role radio.
OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
The drive towards a software-defined radio (SDR) in which much of the processing is controlled by reprogrammable digital hardware is placing new demands on the analogue RF front end. In order to facilitate multi-role multi-mode operation, this must impose the minimum of constraints on the parameters that can be defined in software, while still offering a performance which is at least as good as today's application-specific radios. This paper outlines some of the areas of research being carried out at the University of Bristol, funded by DERA, in an attempt to improve the flexibility and performance of the analogue RF front-end of a multi-role radio.
Key concepts: Software-defined radio, RF front end, Radio frequency, Flexibility (engineering), Front and back ends, Software, Computer science, Digital radio