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Adaptive Congestion Control for Handover in Heterogeneous Mobile Content-Centric Networking

机译:异构移动内容中心网络切换的自适应拥塞控制

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CCN (Content-Centric Networking) is receiver-driven architecture whose communication is triggered by consumer requests. When a consumer changes its access point (handover), it cannot receive requested Data packets. However, the consumer can retransmit in-flight Interest packets to a new route and reconstruct its route to obtain corresponding Data packets. Each consumer has its own parameters for congestion control, e.g. congestion window size, congestion threshold and timeout value. In the case of a handover to a heterogeneous network, e.g. from LTE to Wi-Fi, when congestion parameters set just before the handover are carried over, they probably are inadequate for new network environments. In this paper, we propose an effective receiver-driven control, Congestion Parameter Initialization. Our policy is quite simple and a consumer initializes its congestion parameters just after the handover. Our simulation results show that our proposal can adapt its congestion parameters to new network environment quickly.
机译:CCN(以内容为中心的网络)是接收器驱动的架构,其通信由消费者请求触发。当消费者更改其接入点(切换)时,它无法接收请求的数据包。但是,消费者可以将飞行中的利息分组重新传递给新路由并重建其路由以获得相应的数据包。每个消费者都有自己的拥塞控制参数,例如,拥塞窗口大小,拥塞阈值和超时值。在切换到异质网络的情况下,例如从LTE到Wi-Fi,当在携带切换之前设置的拥塞参数时,它们可能对新的网络环境不足。在本文中,我们提出了有效的接收器驱动控制,拥塞参数初始化。我们的政策非常简单,消费者在切换后刚刚初始化其拥塞参数。我们的仿真结果表明,我们的提案可以快速将其拥塞参数适应新的网络环境。

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