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Parallel Measurement and Modeling of Transport in the Darht II Beamline on ETA II

机译:在ETA II上的DARHT II梁线上运输的平行测量和建模

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To successfully tune the DARHT II transport beamline requires the close coupling of a model of the beam transport and the measurement of the beam observables as the beam conditions and magnet settings are varied. For the ETA II experiment using the DARHT II beamline components this was achieved using the SUICIDE (Simple User Interface Connecting to an Integrated Data Environment) data analysis environment and the FITS (Fully Integrated Transport Simulation) model. The SUICIDE environment has direct access to the experimental beam transport data at acquisition and the FITS predictions of the transport for immediate comparison. The FITS model is coupled into the control system where it can read magnet current settings for real time modeling. We find this integrated coupling is essential for model verification and the successful development of a tuning aid for the efficient convergence on a useable tune. We show the real time comparisons of simulation and experiment and explore the successes and limitations of this close coupled approach.
机译:为了成功调整DARHT II运输梁线需要光束传输模型的紧密耦合,并随着光束条件和磁体设置变化,光束可观察的测量值。对于使用DARHT II的ETA II实验,使用自杀(连接到集成数据环境的简单用户界面)数据分析环境和适合(完全集成的传输模拟)模型来实现这一目标。自杀环境可以直接访问采集时的实验梁传输数据,并且符合运输的适合预测,即时进行比较。 FITS模型耦合到控制系统中,可以读取实时建模的磁体电流设置。我们发现这一集成耦合对于模型验证至关重要,并在可用调谐上实现高效融合的调整辅助的成功开发。我们展示了模拟和实验的实时比较,探讨了这种关闭耦合方法的成功和限制。

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