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Real-time diagnostics at ASDEX Upgrade-Architecture and operation

机译:ASDEX升级架构和操作上的实时诊断

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Diagnostics at ASDEX Upgrade have available a very large number of highly developed measuring channels. The prospect of making this wealth of information usable for plasma optimisation led to the implementation of a number of diagnostics running data acquisition in real-time (RT). Ultimately, this development aims to achieve a network of intelligent diagnostics delivering analysed data for high-level plasma performance control such as profile shaping and NTM stabilisation. The new RT diagnostics consist of standard industrial 19 in. servers organised in clusters and running a standard UNIX multiprocessor RT-capable operating system (RT OS). Built-to-purpose computer interface cards deliver data (e.g. via serial links) from the data acquisition (DAQ) front-ends directly into the main memory of the DAQ servers. An RT data analysis task immediately following the running direct memory access (DMA) data transfers processes the data and delivers the results to follow-up systems in the control chain. Whereas the first systems were implemented in a simple just a bunch of computers (JBOC) configuration being operated as a number of single diagnostics, newer systems are integrated into diagnostic clusters using parallel computing techniques such as message passing interface (MPI). The paper describes the hardware (ADC front-ends, serial I/O, selection criteria and performance of the involved computer busses and systems) and software (DAQ, DA, RT OS, MPI) architecture of the assembled systems. Benchmark results for DAQ and MPI bandwidth and latencies as well as for the behaviour of the RT OS will be given.
机译:ASDEX升级版的诊断程序提供了大量非常先进的测量通道。使这种丰富的信息可用于等离子体优化的前景导致了许多诊断运行,这些诊断运行实时(RT)数据。最终,该开发旨在实现智能诊断网络,该网络可提供分析数据以进行高级等离子性能控制,例如轮廓整形和NTM稳定化。新的RT诊断程序由按群集组织的标准工业19英寸服务器组成,并运行标准的UNIX多处理器支持RT的操作系统(RT OS)。专用计算机接口卡将数据采集(DAQ)前端中的数据(例如,通过串行链接)直接传送到DAQ服务器的主存储器中。紧接正在运行的直接内存访问(DMA)数据传输之后的RT数据分析任务将处理数据并将结果传递到控制链中的后续系统。尽管最初的系统是在简单的一堆计算机(JBOC)配置中实现的,并且可以将其作为多个单个诊断程序进行操作,但是使用并行计算技术(例如消息传递接口(MPI))将更新的系统集成到诊断群集中。本文描述了组装系统的硬件(ADC前端,串行I / O,选择标准和所涉及的计算机总线和系统的性能)和软件(DAQ,DA,RT OS,MPI)体系结构。将给出DAQ和MPI带宽和延迟以及RT OS行为的基准结果。

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