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An implementation and experimental study of the Adaptive PI Rate Control Protocol

机译:自适应PI速率控制协议的实现与实验研究

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Adaptive PI Rate Control Protocol (API-RCP) has been proposed as an explicit congestion control mechanism [1]. In this paper, a Linux-based testbed is created to validate the features and performance of API-RCP. Various issues on implementing API-RCP in Linux kernel are addressed. There are two outcomes of our experimental results: a) Confirm that in practice API-RCP is as effective as the theory asserts in achieving a high and smooth sending rate, a small and smooth round trip time (RTT), an almost full link utilization and zero packet drop, and b) Demonstrate that API-RCP exhibits good robustness to varying network environment with changing flows or network delays. All these support that API-RCP is a very viable candidate in the real network implementations.
机译:自适应PI速率控制协议(API-RCP)已被提出作为显式的拥塞控制机制[1]。在本文中,创建了一个基于Linux的测试平台来验证API-RCP的功能和性能。解决了在Linux内核中实现API-RCP的各种问题。我们的实验结果有两个结果:a)确认在实践中,API-RCP在实现高且平滑的发送速率,小而平滑的往返时间(RTT),几乎完全的链路利用率方面与理论所宣称的一样有效。零丢包; b)证明API-RCP在流量变化或网络延迟变化的情况下对变化的网络环境表现出良好的鲁棒性。所有这些支持使API-RCP在实际网络实现中非常可行。

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