首页> 外文学位 >Space Communication Protocol Standards-Transport Protocol (SCPS-TP) over cislunar communication links and delay impact.
【24h】

Space Communication Protocol Standards-Transport Protocol (SCPS-TP) over cislunar communication links and delay impact.

机译:空间通信协议标准传输协议(SCPS-TP)在月牙形通信链路上的传输和延迟的影响。

获取原文
获取原文并翻译 | 示例

摘要

Researchers know that the performance (that is the efficiency) of TCP deteriorates with the increase in link delay and bit-error rate (BER ). This is because of its window-based transmission controls algorithms. In an environment, particularly a space environment, which involves large bandwidth-delay products (BDP), scientists and researchers found that the window-based mechanism is not favorable for a reliable end-to-end data transfer. It is in this kind of an environment that the potential of the rate-based Internet-type protocols to have low loss by maintaining a smooth data flow has made them attractive in space communications. However, very few studies have been done on development and evaluation of rate-based transmission control for space environment. Space Communication Protocol Standards-Transport Protocol (SCPS-TP) is a set of TCP extensions aimed at reliable transfer of information between space mission end systems. Some works have been done on throughput performance evaluation of SCPS-TP over LEO and GEO-satellite channels. In this paper, we present an experimental performance evaluation of SCPS-TP over a simulated cislunar communication link and also provide a comparative analysis of channel delay impact on the rate-based and the window-based transmission mechanisms over space-Internet links. We intend to see how effective both the window-based and the rate-based transmission control mechanisms in coping with space-channel delay from LEO satellite links, GEO satellite links, with long Cislunar link delay, especially when hybridized with a high bit-error rate (BER), and which option has throughput advantage over the other. The evaluation is based on the results of the file transfer experiments conducted using the Space-to-Ground Link Simulation (SGLS) test-bed. The experimental results reveal that the protocols have statistically significant performance difference over an error-prone link with a BER around 10-5 at which Pure Rate Control shows superior performance over the other three protocols. SCPS-Vegas performs poorly over a long-delayed, error-prone cislunar channel. Quantitatively, the throughput advantage of SCPS-Pure Rate Control is around 3000 bytes/sec over all other three protocols over both symmetrical and asymmetrical channels at BER=10-5. Moreover, even when the link delay is becoming longer, SCPS-Pure Rate Control maintains a higher throughput compared to other protocols. This verifies our prediction that rate-based protocol is the least sensitive to the change of link delays for both channels. Hence, Pure Rate Control is very suitable for a long-delayed, error-prone cislunar communication links.
机译:研究人员知道,随着链路延迟和误码率(BER)的增加,TCP的性能(即效率)会下降。这是因为其基于窗口的传输控制算法。在涉及大带宽延迟产品(BDP)的环境中,特别是在空间环境中,科学家和研究人员发现,基于窗口的机制不利于可靠的端到端数据传输。在这种环境中,基于速率的Internet型协议通过保持平稳的数据流而具有低丢失的潜力使它们在空间通信中具有吸引力。但是,关于空间环境基于速率的传输控制的开发和评估的研究很少。空间通信协议标准传输协议(SCPS-TP)是一组TCP扩展,旨在在空间任务终端系统之间可靠地传输信息。在LEO和GEO卫星信道上对SCPS-TP的吞吐量性能评估方面已经完成了一些工作。在本文中,我们提出了在模拟的月牙通信链路上对SCPS-TP进行的实验性能评估,还提供了信道延迟对空间-Internet链路上基于速率和基于窗口的传输机制的影响的比较分析。我们打算看到基于窗口和基于速率的传输控制机制在应对LEO卫星链路,GEO卫星链路的空间信道延迟以及长Cislunar链路延迟方面的有效性,特别是在与高误码率混合时速率(BER),以及哪个选项具有吞吐量优势。评估是基于使用空对地链接模拟(SGLS)测试平台进行的文件传输实验的结果。实验结果表明,该协议在易于出错的链路上具有统计学上显着的性能差异,误码率为10-5左右,在此速率下,Pure Rate Control显示出优于其他三种协议的性能。 SCPS-Vegas在长时延,易出错的立柱通道上表现不佳。从数量上看,在BER = 10-5的对称和非对称通道上,SCPS纯速率控制的吞吐量优势比所有其他三个协议都高出约3000字节/秒。此外,即使链路延迟变得更长,与其他协议相比,SCPS-纯速率控制仍可保持更高的吞吐量。这验证了我们的预测,即基于速率的协议对两个通道的链路延迟的变化最不敏感。因此,Pure Rate Control非常适用于延迟时间长,容易出错的顺时针通讯链接。

著录项

  • 作者

    Aryasomayajula, Naga C.;

  • 作者单位

    Lamar University - Beaumont.;

  • 授予单位 Lamar University - Beaumont.;
  • 学科 Electrical engineering.
  • 学位 M.S.E.E.
  • 年度 2007
  • 页码 70 p.
  • 总页数 70
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号