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Optimal acknowledgment frequency over asymmetric space-internet links

机译:非对称空间-互联网链路上的最佳确认频率

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摘要

The acknowledgement (ACK) strategy of transmission control protocol (TCP) has been modified to delay the ACKs for a configurable period of time that is related to the round-trip time (RTT) to improve its performance in asymmetric links such as space communications. A general relationship between the asymmetric channel ratio and the optimal ACK frequency to achieve maximum throughput is not available. This paper studies the optimal ACK frequency with respect to the channel RTT to achieve the maximum throughput over various asymmetric, geo-stationary earth orbit (GEO)-satellite links using a test-bed. It is found that when the asymmetric channel ratio is as high as about 100/1, the optimal ACK frequency must be increased with an increase in asymmetric ratio to complement the impact of the reduction of ACK channel rate. As a rule of thumb, every two-fold increase in asymmetric ratio requires the optimal ACK frequency to be increased by one ACK per RTT. A regression model was built to reflect the relationship between the optimal ACK frequency and the asymmetric channel ratio and has been validated
机译:已对传输控制协议(TCP)的确认(ACK)策略进行了修改,以将ACK延迟与往返时间(RTT)有关的可配置时间段,以提高其在非对称链路(如空间通信)中的性能。不对称信道比率与实现最大吞吐量的最佳ACK频率之间的一般关系不可用。本文研究了相对于信道RTT的最佳ACK频率,以在使用试验台的各种不对称,对地静止地球轨道(GEO)-卫星链路上实现最大吞吐量。已经发现,当不对称信道比率高达大约100/1时,最优ACK频率必须随着不对称比率的增加而增加,以补充ACK信道速率降低的影响。根据经验,不对称比率每增加2倍,就需要将每个RTT的最佳ACK频率增加一个ACK。建立了一个回归模型以反映最佳ACK频率与非对称信道比率之间的关系,并已进行了验证

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