Cern – European Organization for Nuclear Research Analytic Robust Stability Analysis of Svd Orbit Feedback

نویسندگان

  • Jürgen Pfingstner
  • Jochem Snuverink
چکیده

Orbit feedback controllers are indispensable for the operation of modern particle accelerators. Many such controllers are based on the decoupling of the inputs and outputs of the system to be controlled with the help of the singular value decomposition (SVD controller). It is crucial to verify the stability of SVD controllers, also in the presence of mismatches between the used accelerator model and the real machine (robust stability problem). In this paper, analytical criteria for guaranteed stability margins of SVD orbit feedback systems for three different types of model mismatches are presented: scaling errors of actuators and BPMs (beam position monitors) and additive errors of the orbit response matrix. For the derivation of these criteria, techniques from robust control theory have been used, e.g the small gain theorem. The obtained criteria can be easily applied directly to other SVD orbit feedback systems. As an example, the criteria were applied to the orbit feedback system of the Compact Linear Collider (CLIC) and revealed relaxed tolerances for the input and output errors. For additive errors of the orbit response matrix the criteria could only deliver relatively small guaranteed margins. Geneva, Switzerland 26. July 2012 CLIC – Note – 946 Analytic robust stability analysis of SVD orbit feedback systems Jürgen Pfingstner∗and Jochem Snuverink† 2 of July 2012 Orbit feedback controllers are indispensable for the operation of modern particle accelerators. Many such controllers are based on the decoupling of the inputs and outputs of the system to be controlled with the help of the singular value decomposition (SVD controller). It is crucial to verify the stability of SVD controllers, also in the presence of mismatches between the used accelerator model and the real machine (robust stability problem). In this paper, analytical criteria for guaranteed stability margins of SVD orbit feedback systems for three different types of model mismatches are presented: scaling errors of actuators and BPMs (beam position monitors) and additive errors of the orbit response matrix. For the derivation of these criteria, techniques from robust control theory have been used, e.g the small gain theorem. The obtained criteria can be easily applied directly to other SVD orbit feedback systems. As an example, the criteria were applied to the orbit feedback system of the Compact Linear Collider (CLIC) and revealed relaxed tolerances for the input and output errors. For additive errors of the orbit response matrix the criteria could only deliver relatively small guaranteed margins.

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تاریخ انتشار 2012