CUBIC Local Loss Recovery vs. BBR on (Satellite) Internet Paths

Jörg Deutschmann, K. Hielscher, Reinhard German
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Abstract

Paths with high delay and packet loss are problematic for transport protocols, especially when loss-based congestion control algorithms are used. Our topology of interest is a geostationary satellite path (round trip time approx. 600 ms) with additional packet loss, which could be caused by a lossy wireless local area network. In geostationary satellite networks, Performance Enhancing Proxies split TCP connections to improve performance, but this is not possible in case of encrypted transport protocols (VPNs, QUIC). This motivates the use of local loss recovery, i.e., avoiding packet loss on specific path segments. We briefly discuss related concepts, architectures, and protocols. We then evaluate local loss recovery using a TCP tunnel on the lossy link. By means of a simple emulation setup, we demonstrate that local loss recovery has great performance benefits if CUBIC is used. It is also shown that BBR works well for high-delay and lossy paths even without local loss recovery.
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立方本地损失恢复与(卫星)互联网路径上的BBR
具有高延迟和数据包丢失的路径对于传输协议来说是有问题的,特别是当使用基于丢失的拥塞控制算法时。我们感兴趣的拓扑结构是地球同步卫星路径(往返时间近似)。600毫秒),并有额外的数据包丢失,这可能是由有损耗的无线局域网络造成的。在地球同步卫星网络中,性能增强代理拆分TCP连接以提高性能,但这在加密传输协议(vpn, QUIC)的情况下是不可能的。这激发了本地丢失恢复的使用,即避免特定路径段上的数据包丢失。我们将简要讨论相关的概念、体系结构和协议。然后,我们使用TCP隧道在有损链路上评估本地丢失恢复。通过简单的仿真设置,我们证明了如果使用CUBIC,本地丢失恢复具有很大的性能优势。结果表明,BBR在高时延和有损耗的路径下,即使没有局部损耗恢复,也能很好地工作。
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