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Statistical multiplexing of data and encoded voice in a transparent intelligent network

机译:透明智能网络中数据和编码语音的统计复用

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The paper describes the work done thus far in the development of a means of statistically multiplexing data and encoded voice in a transparent and intelligent network called TI-NET. A review of previous work in packetized voice transmission in a conventional packet switched network (ARPANET) has revealed problems related to large fixed and variable transmission delays. These problems result in degradations in speech quality in the form of time scale distortion and gaps due to very late or lost packets. The paper shows that TI-NET has various features which counter the above problems, and thereby make it appear very suitable for encoded voice transmission.

The paper describes a software implementation of a protocol for encoded voice transmission which takes advantage of the 60 to 65% idle time in conversations (one way) so that only active periods in speech need be transmitted; this is not possible with present frame synchronous vocoders which transmit continuously.

The paper describes the present experimental TI-NET which consists of two nodes (PDP11's) joined by a 9.6 kb/s link. For convenience the protocol for encoded voice transmission has been implemented in the TI-NET nodes, and the transparent transmission of data and encoded voice has been demonstrated. With regard to packetizing synchronous messages within TI-NET, a new protocol is described (and has been implemented) for padding partially filled "minipackets" that are likely to occur at the end of most synchronous messages.

In addition, the paper discusses the features of another aspect of TI-NET, i.e. satellite extension nodes, which are used to enable both local and remote regions of high data concentration to access the subnet through 12-14 GHZ satellite links. It is shown that the advantages of accessing TI-NET by satellite extension nodes (as compared to accessing a conventional packet switched network by terrestrial facilities), include lower communication costs, greater accuracy and security, and smaller entrance delay.

Finally, the paper describes an experiment in which data and encoded voice was transmitted from a TI-NET node at Carleton University, Ottawa, at 9.6 kb/s in "multiuser" packets, over the Hermes (CTS) satellite to NASA AMES Research Center in California, where it was looped back and returned to the same TI-NET node.

The significance of the work described in the paper is that it represents an important step in the development of a transparent and intelligent public network capable of transmitting encoded voice (at 9.6 kb/s and lower rates) and data. Such a network can serve as an integrated system for data and voice and provide cost benefits to its users through savings in bandwidth of the order of 50 to 1, by statistically multiplexing data with vocoded voice.

机译:

本文描述了迄今为止在称为TI-NET的透明智能网络中统计复用数据和编码语音的方法的开发工作。对常规分组交换网络(ARPANET)中的分组语音传输中的先前工作的回顾发现了与较大的固定和可变传输延迟有关的问题。这些问题导致语音质量以时标失真和间隙形式出现,这是由于数据包非常晚或丢失所致。本文表明TI-NET具有解决上述问题的各种功能,从而使其非常适合于编码语音传输。 本文描述了一种编码语音传输协议的软件实现,该协议利用了会话中60%到65%的空闲时间(一种方式),因此只需要传输语音的活动时间段;对于当前连续发送的帧同步声码器而言,这是不可能的。

本文介绍了目前的实验性TI-NET,该网络由两个节点(PDP11)和一个9.6 kb / s链接组成。为了方便起见,已在TI-NET节点中实现了用于编码语音传输的协议,并且已经演示了数据和编码语音的透明传输。关于在TI-NET中对同步消息进行打包,描述了一种新协议(并已实现),该协议用于填充部分填充的“微型数据包”,这些数据可能会出现在大多数同步消息的末尾。

此外,本文讨论了TI-NET另一个方面的特性,即卫星扩展节点,这些特性用于使高数据集中度的本地和远程区域都可以通过12-14个GHZ卫星链路访问子网。结果表明,通过卫星扩展节点访问TI-NET的优势(与通过地面设施访问常规的分组交换网络相比)具有较低的通信成本,更高的准确性和安全性以及较小的进入延迟。 最后,本文描述了一个实验,其中数据和编码的语音以9.6 kb / s的速率从“渥太华卡尔顿大学”的TI-NET节点以“多用户”数据包的形式通过爱马仕(CTS)卫星传输到NASA。位于加利福尼亚的AMES研究中心,将其环回并返回到同一TI-NET节点。

本文所述工作的意义在于,它代表着透明智能智能网络发展的重要一步,该公共网络能够传输编码语音(9.6 kb / s和更低速率)和数据。这样的网络可以用作数据和语音的集成系统,并可以通过将数据与语音编码的语音进行统计复用,从而节省50到1的带宽,从而为用户带来成本优势。

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