Compensating for Amplifier Non-Linearity in a SEL Controller

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Raman, S., Varghese, P., Reyes, L., Guran, M., Doolittle, L., Murthy, S., Du, Q.
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866918164490616832
author Raman, S.
Varghese, P.
Reyes, L.
Guran, M.
Doolittle, L.
Murthy, S.
Du, Q.
author_facet Raman, S.
Varghese, P.
Reyes, L.
Guran, M.
Doolittle, L.
Murthy, S.
Du, Q.
contents The Self-Excited Loop (SEL) architecture, used in some continuous-wave (CW) superconducting linacs, relies on a positive feedback mechanism that requires carefully defined operating limits to ensure stable operation. These limits are typically derived from amplifier calibration, which characterizes the relationship between forward power and DAC drive. However, amplifier non-linearity often prevents a simple linear fit of this characteristic, introducing errors that can compromise stability. To address this, we present a modified calibration procedure that incorporates amplifier non-linearity into the SEL framework. The approach is validated with test data from a 32 kW solid-state amplifier (SSA) and a cavity emulator developed for the Fermilab PIP-II linac.
format Preprint
id arxiv_https___arxiv_org_abs_2510_15813
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Compensating for Amplifier Non-Linearity in a SEL Controller
Raman, S.
Varghese, P.
Reyes, L.
Guran, M.
Doolittle, L.
Murthy, S.
Du, Q.
Accelerator Physics
The Self-Excited Loop (SEL) architecture, used in some continuous-wave (CW) superconducting linacs, relies on a positive feedback mechanism that requires carefully defined operating limits to ensure stable operation. These limits are typically derived from amplifier calibration, which characterizes the relationship between forward power and DAC drive. However, amplifier non-linearity often prevents a simple linear fit of this characteristic, introducing errors that can compromise stability. To address this, we present a modified calibration procedure that incorporates amplifier non-linearity into the SEL framework. The approach is validated with test data from a 32 kW solid-state amplifier (SSA) and a cavity emulator developed for the Fermilab PIP-II linac.
title Compensating for Amplifier Non-Linearity in a SEL Controller
topic Accelerator Physics
url https://arxiv.org/abs/2510.15813