An offset tone based gain stabilization technique for mixed-signal RF measurement systems

Joshi, Gopal ; Motiwala, Paresh D. ; Randale, G.D. ; Singh, Pitamber ; Agarwal, Vivek ; Kumar, Girish (2015) An offset tone based gain stabilization technique for mixed-signal RF measurement systems Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 795 . pp. 399-408. ISSN 01689002

Full text not available from this repository.

Official URL: http://doi.org/10.1016/j.nima.2015.06.015

Related URL: http://dx.doi.org/10.1016/j.nima.2015.06.015

Abstract

This paper describes a gain stabilization technique for a RF signal measurement system. A sinusoidal signal of known amplitude, phase and close enough in frequency is added to the main, to be measured RF signal at the input of the analog section. The system stabilizes this offset tone in the digital domain, as it is sampled at the output of the analog section. This process generates a correction factor needed to stabilize the magnitude of the gain of the analog section for the main RF signal. With the help of a simple calibration procedure, the absolute amplitude of the main RF signal can be measured. The technique is especially suited for a system that processes signals around a single frequency, employs direct signal conversion into the digital domain, and processes subsequent steps in an FPGA. The inherent parallel signal processing in an FPGA-based implementation allows a real time stabilization of the gain. The effectiveness of the technique is derived from the fact, that the gain stabilization stamped to the main RF signal measurement branch requires only a few components in the system to be inherently stable. A test setup, along with experimental results is presented from the field of RF instrumentation for particle accelerators. Due to the availability of a phase synchronized RF reference signal in these systems, the measured phase difference between the main RF and the RF reference is also stabilized using this technique. A scheme of the signal processing is presented, where a moving average filter has been used to filter out not only the unwanted frequencies, but also to separate the main RF signal from the offset tone signal. This is achieved by a suitable choice of sampling and offset tone frequencies. The presented signal processing scheme is suitable to a variety of RF measurement applications.

Item Type:Article
Source:Copyright of this article belongs to Elsevier B.V..
ID Code:115051
Deposited On:16 Mar 2021 09:34
Last Modified:16 Mar 2021 09:34

Repository Staff Only: item control page