dorsal/arxiv
View SchemaBeam-based Feedback Simulations for the NLC Linac
| Authors | L. Hendrickson, N. Phinney, P. Raimondi, T. Raubenheimer, A. Seryi, P. Tenenbaum |
|---|---|
| Categories | |
| ArXiv ID | physics/0009005 |
| URL | https://arxiv.org/abs/physics/0009005 |
| Journal | eConfC000821:MOA15,2000 |
Abstract
Extensive beam-based feedback systems are planned as an integral part of the Next Linear Collider (NLC) control system. Wakefield effects are a significant influence on the feedback design, imposing both architectural and algorithmic constraints. Studies are in progress to assure the optimal selection of devices and to refine and confirm the algorithms for the system design. We show the results of initial simulations, along with evaluations of system response for various conditions of ground motion and other operational disturbances.
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"abstract": "Extensive beam-based feedback systems are planned as an integral part of the\nNext Linear Collider (NLC) control system. Wakefield effects are a significant\ninfluence on the feedback design, imposing both architectural and algorithmic\nconstraints. Studies are in progress to assure the optimal selection of devices\nand to refine and confirm the algorithms for the system design. We show the\nresults of initial simulations, along with evaluations of system response for\nvarious conditions of ground motion and other operational disturbances.",
"arxiv_id": "physics/0009005",
"authors": [
"L. Hendrickson",
"N. Phinney",
"P. Raimondi",
"T. Raubenheimer",
"A. Seryi",
"P. Tenenbaum"
],
"categories": [
"physics.acc-ph"
],
"journal_ref": "eConfC000821:MOA15,2000",
"title": "Beam-based Feedback Simulations for the NLC Linac",
"url": "https://arxiv.org/abs/physics/0009005"
},
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