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System and method for creating N-times bandwidth from N separate physical lines

机译:用于从N条单独的物理线路创建N倍带宽的系统和方法

摘要

A method and system aggregate data on multiple physically separate lower-speed E1/J1 channels of a communications network to generate higher bandwidth. A high speed data stream is first divided into lower bandwidth channels and transmitted through the network. The data arrives with varying delays depending on the physical characteristics of the network. Low bandwidth channels are aggregated together into a high bandwidth channel by determining the different geographical delay parameters among the lower speed channels, adjusting the transmission delays by alignment circuitry, and then combining the lower speed signals into one high bandwidth channel for the user. The transmission delay adjustment consists in adding a pseudo-random noise pattern to each of the lower bandwidth channels, measuring the time difference among all the channels, and then adjusting the time differences in the received data stream so that the combination of the signals produces a coherent higher bandwidth data stream. Because of the enhanced delay compensation mechanism, there is virtually no distance limitation in the transmission of data and if one of the lower physical telecommunication lines becomes inoperative, bandwidth recovery is provided.
机译:一种方法和系统在通信网络的多个物理上分开的较低速度的E1 / J1信道上聚合数据以生成较高的带宽。首先将高速数据流分为较低带宽的通道,然后通过网络进行传输。数据以不同的延迟到达,具体取决于网络的物理特性。通过确定低速信道之间的不同地理延迟参数,通过对齐电路调整传输延迟,然后将低速信号组合为一个高带宽信道,将低带宽信道聚合到一个高带宽信道中。传输延迟调整包括向每个较低带宽的信道中添加伪随机噪声模式,测量所有信道之间的时间差,然后调整接收到的数据流中的时间差,以使信号的组合产生一个相干的更高带宽的数据流。由于增强了延迟补偿机制,因此实际上在数据传输中没有距离限制,并且如果较低的物理电信线路之一不起作用,则可以提供带宽恢复。

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