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Programmable Hardware Accelerator for Finite-State-Machine Processing in Flexible Access Network Systems

机译:可编程硬件加速器,用于灵活接入网络系统中的有限状态机处理

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The application of network function virtualization (NFV) and software-defined networking (SDN) to passive optical networks (PONs) is attracting attention for the deployment of cost-effective access network systems. This paper presents a novel architecture of a programmable finite state machine (P-FSM) as a hardware accelerator for protocol processing in an optical line terminal (OLT). The P-FSM is programmable hardware that manages various types of FSMs to enhance flexibility in OLTs and achieve wired-rate performance with a negligible increase in total chip area. The P-FSM is implemented using three key technologies: a specific architecture for state management of communications protocols to minimize the logic area, a memory distributed implementation to minimize the program memory, and a new branch operation to minimize the memory area and reduce processing time. Evaluation results show that the P-FSM can handle 10G-EPON/NG-PON2 communications protocols in the same architecture while achieving wired-rate performance. The increase in the total designed area is only 1.5% to 4.9% depending on the number of protocols supported compared to the area of a conventional communications SoC without flexibility. We also clarify that our architecture has the scalability needed to modify the number of FSMs and the maximum number of ONU connections according to the system scale.
机译:网络功能虚拟化(NFV)和软件定义的网络(SDN)应用于被动光网络(PONS)的应用是引起人们的关注,以便部署经济有效的接入网络系统。本文介绍了一种可编程有限状态机(P-FSM)的新颖架构,作为用于光学线路端子(OLT)中的协议处理的硬件加速器。 P-FSM是可编程硬件,管理各种类型的FSM,以增强OLT的灵活性,实现有线速率性能,可忽略总芯片区域的增加。使用三个关键技术实现P-FSM:用于最小化逻辑区域的状态管理的特定架构,以最小化程序存储器的存储器分布式实现,以及最小化存储区的新分支操作并减少处理时间。评估结果表明,P-FSM可以在相同的架构中处理10G-EPON / NG-PON2通信协议,同时实现有线速率性能。由于与传统通信SOC的面积不灵活地,所设计面积总量的增加仅为1.5%至4.9%。我们还澄清了根据系统规模修改FSMS数量和ONU连接的最大数量所需的可扩展性。

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