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FPGA-based, specialized trigger and data acquisition systems for high-energy physics experiments

机译:基于FPGA的专用触发和数据采集系统,用于高能物理实验

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High-energy physics (HEP) experiments with particle colliders enable us to study the structure of matter, its properties and interactions. The work in this field stimulates the development of measurement methods and new technological solutions. An increase in the metrological accuracy (in terms of space, time or signal recognition), as well as in the speed of data processing and registration, is observed. The growing functional requirements in triggering and data acquisition lead to a widespread application of field programmable gate arrays (FPGAs) with hardware description language (HDL) programming. The review discusses multi-channel, distributed, synchronous measurement systems for triggering and data acquisition used in HEP experiments. These systems are now mainly based on FPGA solutions. The conditions, requirements and confinements of FPGAs in HEP measurement systems are presented.
机译:使用粒子对撞机的高能物理(HEP)实验使我们能够研究物质的结构,其性质和相互作用。该领域的工作促进了测量方法和新技术解决方案的发展。观察到计量精度(就空间,时间或信号识别而言)以及数据处理和注册速度的提高。触发和数据采集中不断增长的功能要求导致带有硬件描述语言(HDL)编程的现场可编程门阵列(FPGA)的广泛应用。本文讨论了用于HEP实验的触发和数据采集的多通道,分布式,同步测量系统。这些系统现在主要基于FPGA解决方案。介绍了HEP测量系统中FPGA的条件,要求和局限性。

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