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A Light-Weight Forwarding Plane for Content-Centric Networks

机译:用于以内容为中心的网络的轻重转换平面

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We present CCN-DART, a more efficient forwarding approach for content-centric networking (CCN) than named data networking (NDN) that substitutes Pending Interest Tables (PIT) with Data Answer Routing Tables (DART) and uses a novel approach to eliminate forwarding loops. The forwarding state required at each router using CCN-DART consists of segments of the routes between consumers and content providers that traverse a content router, rather than the Interests that the router forwards towards content providers. Accordingly, the size of a DART is proportional to the number of routes used by Interests traversing a router, rather than the number of Interests traversing a router. We show that CCN-DART avoids forwarding loops by comparing distances to name prefixes reported by neighbors, even when routing loops exist. Results of simulation experiments comparing CCN-DART with NDN using the ndnSIM simulation tool show that CCN-DART incurs 10 to 20 times less storage overhead.
机译:我们提出了CCN-DART,一种以内容为中心的网络(CCN)更有效的转发方法(CCN),而不是命名的数据网络(NDN),该数据网络(NDN)替换有数据应答路由表(DART)的待处理兴趣表(PIT),并使用新的方法来消除转发方法循环。使用CCN-DART的每个路由器所需的转发状态包括消费者和内容提供者之间的路线的段,而不是通过路由器向内容提供商转发的兴趣。因此,DART的大小与遍历路由器的兴趣使用的途径的数量成比例,而不是遍历路由器的兴趣的数量。我们展示CCN-DATT通过比较邻居报告的距离的距离来避免转发循环,即使存在路由循环。使用NDNSIM仿真工具将CCN-DATT与NDN进行比较的仿真实验结果表明,CCN-DATT在储存开销较少的10至20倍。

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