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首页> 外文期刊>IEEE Transactions on Nuclear Science >Exploring RapidIO Technology Within a DAQ System Event Building Network
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Exploring RapidIO Technology Within a DAQ System Event Building Network

机译:在DAQ系统事件构建网络中探索RapidIO技术

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RapidIO (http://rapidio.org/) technology is a packet-switched high-performance fabric, which has been under active development since 1997. The technology is used in all 4G/LTE base stations worldwide. RapidIO is also used in embedded systems that require high reliability, low latency, and deterministic operations in a heterogeneous environment. RapidIO has several offloading features in hardware, therefore relieving the CPUs from time- and power-consuming work. Most importantly, it allows for remote direct memory access and thus zero-copy data transfer. In addition, it lends itself readily to integration with field-programmable gate arrays. In this paper, we investigate RapidIO as a technology for high-speed data acquisition (DAQ) networks, in particular the DAQ system of an LHC experiment. We present measurements using a generic multiprotocol event-building emulation tool that was developed for the LHCb experiment. Event building using a local area network, such as the one foreseen for the future LHCb DAQ, puts heavy requirements on the underlying network as all data sources from the collider will want to send to the same destinations at the same time. This may lead to an instantaneous overcommitment of the output buffers of the switches. We will present results from implementing an event building cluster based on RapidIO interconnect, focusing on the bandwidth capabilities of the technology as well as its scalability.
机译:RapidIO(http://rapidio.org/)技术是一种分组交换高性能结构,自1997年以来一直在积极开发。该技术已在全球所有4G / LTE基站中使用。 RapidIO还用于在异构环境中要求高可靠性,低延迟和确定性操作的嵌入式系统中。 RapidIO在硬件中具有多个卸载功能,因此使CPU免于耗时和耗电的工作。最重要的是,它允许进行远程直接内存访问,从而实现零拷贝数据传输。此外,它很容易与现场可编程门阵列集成。在本文中,我们将RapidIO作为一种用于高速数据采集(DAQ)网络的技术进行研究,尤其是LHC实验的DAQ系统。我们介绍了使用为LHCb实验开发的通用多协议事件构建仿真工具进行的测量。使用局域网的事件构建(例如将来的LHCb DAQ所预见的事件)对基础网络提出了很高的要求,因为来自对撞机的所有数据源都希望同时发送到相同的目的地。这可能会导致开关的输出缓冲区的瞬时过量使用。我们将介绍实现基于RapidIO互连的事件构建集群的结果,重点是该技术的带宽功能及其可伸缩性。

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