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Analysis of Bundle Throughput Over LTP

机译:LTP的捆绑吞吐量分析

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Despite the notable progress that has been achieved on long-haul radio and optical communications, which are expected to improve the data transfer rates of future space exploration missions, both scheduled and random link outages remain possible. To improve reliability, NASA's delay-tolerant networking (DTN) architecture offers the Bundle Protocol (BP) and the Licklider Transmission Protocol (LTP) that implement bundle custodial transfer and automatic repeat query retransmissions. We analyze the performance of these protocols considering the default flow control method of LTP, which limits the number of concurrent sessions. We derive the combined BP and LTP throughput and provide approximations for model parameters that are difficult to find exactly. Event-driven simulations suggest that our analysis is reasonably accurate under different channel conditions and protocol settings. The proposed model provides insight into the role of the channel conditions, the workload, and the choice of BPLTP protocol parameters on the performance of a reliable space link.
机译:尽管在长距离无线电和光通信方面已取得显着进展,有望改善未来太空探索飞行任务的数据传输速率,但定期和随机链路中断仍然可能。为了提高可靠性,NASA的延迟容忍网络(DTN)体系结构提供了捆绑协议(BP)和Licklider传输协议(LTP),它们实现了捆绑保管和自动重发查询重传。考虑到LTP的默认流控制方法,我们分析了这些协议的性能,该方法限制了并发会话的数量。我们导出了BP和LTP的组合吞吐量,并提供了难以精确找到的模型参数的近似值。事件驱动的模拟表明,我们的分析在不同的信道条件和协议设置下是相当准确的。提出的模型提供了对信道条件,工作量以及BPLTP协议参数选择对可靠空间链路性能的作用的深入了解。

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