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Development and application of time-division multiplexing telemetering equipment for data transmission on an electric power system

机译:电力系统数据传输时分多路复用遥测设备的开发与应用

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In the fall of 1957 the Tennessee Valley Authority (TVA) began preliminary work toward increasing the number of telemeter readings by use of existing telemeter circuits with a minimum of modifications and additions. The additional channels were used to provide the power-system dispatchers with data that were normally received by telephone. The initial objective was to transmit the load readings of five hydroelectric plants and their total from the Nashville Load Dispatching Office to the Chattanooga Load Dispatching Office. High-speed data transmission was not a requirement in this case, since no automatic controls were involved and the readings were to be used for informative purposes. In view of the foregoing requirement, studies indicated that distant readings could be transmitted to a remote central location, from which time-division multiplexing telemetering equipment could be employed for data transmission, thus reducing the cost of communication channel facilities. Investigations indicated that no suitable equipment was available for this purpose that would work with existing facilities and that would provide the necessary functions. TVA devised experimental equipment to transmit six hydro plant readings over one impulse channel from the Nashville Load Dispatching Office to the Chattanooga Load Dispatching Office. Later the hydro plant readings were replaced by six substation load readings that are used in a computer for system economic loading purposes. This equipment has operated over a 1-tone channel of a microwave system about 130 miles in length for more than 1 1/2 years and the operation has been satisfactory.
机译:1957年秋天,田纳西河谷管理局(TVA)开始进行初步工作,以利用最少的修改和增加来利用现有的遥测电路来增加遥测读数的数量。附加通道用于向电力系统调度员提供通常通过电话接收的数据。最初的目标是将五个水力发电厂的负荷读数及其总数从纳什维尔负荷调度办公室传输到查塔努加负荷调度办公室。在这种情况下,不需要高速数据传输,因为不涉及自动控制,并且读数将用于提供信息。鉴于上述要求,研究表明可以将远距离读数传输到远程中心位置,从该中心位置可以使用时分多路复用遥测设备进行数据传输,从而降低了通信信道设施的成本。调查表明,没有合适的设备可以与现有设施配合使用并提供必要的功能。 TVA设计了一种实验设备,可以通过一个脉冲通道从纳什维尔负荷分派处向查塔努加负荷分派处传输六个水电厂的读数。后来,水电厂的读数被六个变电站的负载读数所代替,这些读数被用于计算机中,以实现系统经济的负载目的。该设备已经在长度约130英里的微波系统的1音通道上运行了1 1/2年以上,并且运行令人满意。

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