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Improved algorithms for synchronizing computer network clocks

机译:用于同步计算机网络时钟的改进算法

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The Network Time Protocol (NTP) is widely deployed in the Internet to synchronize computer clocks to each other and to international standards via telephone modem, radio and satellite. The protocols and algorithms have evolved over more than a decade to produce the present NTP Version 3 specification and implementations. Most of the estimated deployment of 100000 NTP servers and clients enjoy synchronization to within a few tens of milliseconds in the Internet of today. This paper describes specific improvements developed for NTP Version 3 which have resulted in increased accuracy, stability and reliability in both local-area and wide-area networks. These include engineered refinements of several algorithms used to measure time differences between a local clock and a number of peer clocks in the network, as well as to select the best subset from among an ensemble of peer clocks and combine their differences to produce a local dock accuracy better than any in the ensemble. This paper also describes engineered refinements of the algorithms used to adjust the time and frequency of the local clock, which functions as a disciplined oscillator. The refinements provide automatic adjustment of algorithm parameters in response to prevailing network conditions, in order to minimize network traffic between clients and busy servers while maintaining the best accuracy. Finally, this paper describes certain enhancements to the Unix operating system kernel software in order to realize submillisecond accuracies with fast workstations and networks.
机译:网络时间协议(NTP)广泛部署在Internet中,以通过电话调制解调器,无线电和卫星将计算机时钟彼此同步并与国际标准同步。协议和算法已经发展了十多年,以产生当前的NTP版本3规范和实现。估计100000 NTP服务器和客户端的大多数部署在当今的Internet中都可以在几十毫秒内实现同步。本文介绍了针对NTP版本3开发的特定改进,这些改进已提高了局域网和广域网的准确性,稳定性和可靠性。这些措施包括对几种算法的设计改进,这些算法用于测量本地时钟与网络中多个对等时钟之间的时间差,以及从一组对等时钟中选择最佳子集,并将它们的差组合起来以产生本地对接准确性优于任何合奏。本文还描述了用于调整本地时钟的时间和频率的算法的工程改进,该本地时钟用作自律振荡器。这些改进功能可根据当前的网络状况自动调整算法参数,以最大程度地减少客户端和繁忙服务器之间的网络流量,同时保持最佳准确性。最后,本文描述了Unix操作系统内核软件的某些增强功能,以实现具有快速工作站和网络的亚毫秒级精度。

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