论文标题

LLRF系统的高级软件工具,专门用于欧洲剥离源机构的椭圆形腔管理

High-Level Software Tools for LLRF System Dedicated to Elliptical Cavities Management of European Spallation Source Facility

论文作者

Klys, K., Cichalewski, W., Jalmuzna, W., Mielczarek, A., Perek, P., Napieralski, A.

论文摘要

欧洲散布来源(ESS)加速器由超导椭圆形腔组成。当设施运行时,腔体被从克莱斯特龙提供的电场。该字段的参数由低级射频(LLRF)系统监视和控制。它的主要目标是将振幅和相位保持在给定的设定点。 LLRF系统还负责参考时钟分布。 在机器操作过程中,腔体定期经历由洛伦兹力引起的应变,当梁通过加速结构时出现。即使是腔体的物理尺寸的小变化也会导致其共振频率的变化。这种现象称为失谐,会导致大量功率损失。它是通过LLRF控制系统积极补偿的,该系统可以用步进电动机(缓慢,粗粒子控制)和压电(在运行状态下的主动补偿)物理调整加速腔的长度。 本文描述了支持LLRF系统和空腔管理各个方面的软件的实现和测试。压电驱动程序管理和监视工具专用于压电控制器设备。 LO分发应用程序负责局部振荡器的配置。腔模拟工具旨在提供对硬件设备的属性的访问,并模仿椭圆形腔的行为。 IPMI Manager软件被实施以监视Microtca.4板条箱,这是LLRF系统体系结构的主要组成部分。所有应用程序都是使用实验物理和工业控制系统(EPICS)框架创建的,并在ESS Epics环境(E3)中构建。

The European Spallation Source (ESS) accelerator is composed of superconducting elliptical cavities. When the facility is running, the cavities are fed with electrical field from klystrons. Parameters of this field are monitored and controlled by the Low-Level Radio Frequency (LLRF) system. Its main goal is to keep the amplitude and phase at a given set-point. The LLRF system is also responsible for the reference clock distribution. During machine operation the cavities are periodically experiencing strain caused by the Lorentz force, appearing when the beam is passing through the accelerating structures. Even small changes of the physical dimensions of the cavity cause a shift of its resonance frequency. This phenomenon, called detuning, causes significant power losses. It is actively compensated by the LLRF control system, which can physically tune lengths of the accelerating cavities with stepper motors (slow, coarse grained control) and piezoelements (active compensation during operation state). The paper describes implementation and tests of the software supporting various aspects of the LLRF system and cavities management. The Piezo Driver management and monitoring tool is dedicated for piezo controller device. The LO Distribution application is responsible for configuration of the local oscillator. The Cavity Simulator tool was designed to provide access to properties of the hardware device, emulating behaviour of elliptical cavities. IPMI Manager software was implemented to monitor state of MicroTCA.4 crates, which are major part of the LLRF system architecture. All applications have been created using the Experimental Physics and Industrial Control System (EPICS) framework and built in ESS EPICS Environment (E3).

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