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Hot-plug Based Activation and Deactivation of ATCA FRU Devices

机译:基于热插拔的激活和ATCA FRU设备的停用

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One of the most important features of the Advanced Telecommunications Computing Architecture (ATCA) contributing to its exceptional reliability and availability is its hot-swap functionality. In order for the user to be able to add and remove the components of an ATCA shelf without the necessity of switching the power on and off the PCI Industrial Computer Manufacturers Group (PICMG) specification clearly enumerates the stages a Field Replaceable Unit (FRU) has to go through upon insertion into and extraction from the shelf. These stages form the activation and deactivation processes that occur every time an element is changed in the ATCA system. This paper focuses on these processes placing the emphasis on the Electronic Keying (EK) implementation in the Intelligent Platform Management Controller (IPMC) software developed for the self-designed ATCA Carrier Board for FLASH. This Carrier Board utilizes the standard-defined PCI Express (PCIe) interface as well as introduces proprietary protocols in form of Rocket IO (RIO) and Low Latency Links (LLL).
机译:高级电信计算架构(ATCA)最重要的特征之一是其特殊可靠性和可用性的贡献是其热插拔功能。为了使用户能够添加和移除ATCA货架的组件而不需要打开和关闭PCI工业计算机制造商组(PICMG)规范的必要性,清楚地枚举现场可更换单元(FRU)的阶段在插入和提取架子时经历。这些阶段形成每次在ATCA系统中更改元素时发生的激活和停用过程。本文重点介绍,在为闪光灯开发的智能平台管理控制器(IPMC)软件中强调电子键控(EK)实施的过程中的重点是,为自动设计的ATCA载波开发。该载波使用标准定义的PCI Express(PCIe)接口,并以Rocket IO(RIO)和低延迟链路(LLL)的形式引入专有协议。

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