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Embedded system in FPGA based LLRF controller for FLASH

机译:基于FPGA的FLASH LLRF控制器中的嵌入式系统

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摘要

FPGA devices are often used in High Energy Physics and accelerator technology experiments, where the highest technologies are needed. To make FPGA based systems more flexible, common technique is to provide SoC (System on a Chip) solution in the FPGA, which is in most cases a CPU unit. Such a combination gives possibility to balance between hardware and software implementation of particular task. SoC solution on FPGA can be very flexible, because in simplest cases no additional hardware is needed to run programs on CPU, and when system has such devices like UART, SDRAM memory, mass storage and network interface, it can handle full featured operating system such as Linux or VxWorks. Embedded process can be set up in different configurations, depending on the available resources on board, so every user can adjust system to his own needs. Embedded systems can be also used to perform partial self-reconfiguration of FPGA logic of the chip, on which the system is running. This paper will also present some results on SoC implementations in a Low Level RF system under design for the VUV Free Electron Laser, FLASH, DESY, Hamburg.
机译:FPGA器件通常用于需要最高技术的高能物理和加速器技术实验中。为了使基于FPGA的系统更加灵活,常用的技术是在FPGA中提供SoC(片上系统)解决方案,该解决方案在大多数情况下是CPU单元。这样的组合提供了在特定任务的硬件和软件实现之间进行平衡的可能性。 FPGA上的SoC解决方案可以非常灵活,因为在最简单的情况下,不需要额外的硬件即可在CPU上运行程序,并且当系统具有诸如UART,SDRAM存储器,大容量存储和网络接口之类的设备时,它就可以处理诸如作为Linux或VxWorks。可以根据板上的可用资源,以不同的配置来设置嵌入式过程,因此每个用户都可以根据自己的需要调整系统。嵌入式系统还可以用于执行系统在其上运行的芯片的FPGA逻辑的部分自重新配置。本文还将介绍一些正在为汉堡的FLASH,DESY的VUV自由电子激光器设计的低级RF系统中SoC实施的一些结果。

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