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Experimental considerations on adaptive clock method for transmitting microprocessor-based current differential teleprotection signals in ATM networks

机译:在ATM网络中传输基于微处理器的电流差动远距离保护信号的自适应时钟方法的实验考虑

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This paper describes experimental transmissions of severely time-critical teleprotection signals in ATM networks using the adaptive clock method developed by the authors, in order to assess its potential effectiveness. They examined the transmission delay variations of a commercially available terminal adapter with the method, which not only converts a constant-bit-rate teleprotection signal into ATM cells, and vice versa, but also transfers clock information from one device to another in an asynchronous manner. The experiments showed that one-way delay ranged from 1.7 to 1.94 ms, resulting in a maximum two-way differential delay of 240 /spl mu/s that leads to synchronization errors for the simultaneous sampling of currents at remote stations. The variations were mainly due to the irregularity of read timing of the receive cell buffer in transient states such as just after turning on the power. A method to reduce delay variations by correcting the initial read timing using cell arrival timings is proposed.
机译:本文描述了使用作者开发的自适应时钟方法在ATM网络中对时间要求严格的远程保护信号的实验性传输,以评估其潜在的有效性。他们使用这种方法检查了市售终端适配器的传输延迟变化,该方法不仅将恒定比特率的远程保护信号转换为ATM信元,反之亦然,还以异步方式将时钟信息从一个设备传输到另一个设备。 。实验表明,单向延迟的范围从1.7到1.94 ms,导致最大双向差分延迟为240 / spl mu / s,这导致在远程站同时进行电流采样时出现同步误差。这些变化主要是由于在瞬时状态(例如在接通电源之后)的接收单元缓冲器的读取定时的不规则性造成的。提出了一种通过使用单元到达定时来校正初始读取定时来减少延迟变化的方法。

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