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首页> 外文期刊>Mathematical Problems in Engineering >Models for Master-Slave Clock Distribution Networks with Third-Order Phase-Locked Loops
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Models for Master-Slave Clock Distribution Networks with Third-Order Phase-Locked Loops

机译:具有三阶锁相环的主从时钟分配网络模型

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The purpose of this work is to study the processing and transmission of clock signals in networks of geographically distributed nodes, in order to derive conditions for frequency and phase synchronization between the nodes. The focus is on the master-slave architecture, which presents a priority scheme of clock distribution. One-way master-slave (OWMS ) and two-way master-slave (TWMS) chains are studied, considering that the slave nodes are third-order phase-locked loops (PLLs). Third-order PLLs are chosen to improve the transient response but, if their parameters are not well adjusted, stability problems and chaotic behaviors appear, restricting the lock-in range of the network. Lock-in range for third-order PLLs with Sallen-Key filter is determined and it is verified whether this range is reduced when the PLLs are connected to a network. Numerical experiments show how chain size changes the lock-in ranges and the acquisition times.
机译:这项工作的目的是研究地理分布节点网络中时钟信号的处理和传输,以便得出节点之间频率和相位同步的条件。重点是主从架构,该架构提供了时钟分配的优先级方案。考虑从节点是三阶锁相环(PLL),研究了单向主从(OWMS)和双向主从(TWMS)链。选择三阶PLL可以改善瞬态响应,但是,如果不能很好地调整其参数,则会出现稳定性问题和混沌行为,从而限制了网络的锁定范围。确定了具有Sallen-Key滤波器的三阶PLL的锁定范围,并验证了当PLL连接到网络时是否减小了该范围。数值实验表明链大小如何改变锁定范围和获取时间。

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