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Bandwidth Requirement Determination for a Digitally Controlled Cavity Synchronisation in a Heavy Ion Synchrotron Using Ptolemy II

机译:使用Ptolemy II的重离子同步中的数字控制腔同步的带宽要求确定

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This paper describes a high-level simulation model and its application to determine bandwidth requirements for the hardware implementation of a digital control system. The simulation model is based on Ptolemy II and describes a heavy-ion synchrotron and its control systems for resonance frequency, beam phase, and cavity synchronisation. Simulations are used to verify the suitability of the chosen system structure and to obtain minimum update rates for the coefficients of the adaptive digital controllers. These update rates translate into bandwidth requirements for a fiber optical network connecting the different controller subsystems. Our modelling approach as well as our method to determine the low-level requirements are described in detail and simulation results are presented and discussed.
机译:本文介绍了高级仿真模型及其应用,以确定数字控制系统硬件实现的带宽要求。仿真模型基于Ptolemy II,并描述了一种用于谐振频率,光束相位和空腔同步的重离子同步rotron及其控制系统。模拟用于验证所选择的系统结构的适用性,并获得自适应数字控制器的系数的最小更新速率。这些更新速率转化为连接不同控制器子系统的光纤光网络的带宽要求。我们的建模方法以及我们确定低级要求的方法详细描述并讨论了仿真结果。

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