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Principles for reducing the phase shift between instantaneous analogue and discrete signals and the corresponding values in the sampled values (SV) stream of a digital substation

机译:减少瞬时模拟和离散信号之间的相移以及数字变电站采样值(SV)流中的相应值的原理

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There are numerous publicly available articles on digital substations, including those dedicated to current and voltage measurements, time synchronization, test systems development, principles of substation design, and other aspects of this topic. But the phase shift between instantaneous signals and the corresponding values in the SV (sampled values) stream has been little discussed. We can list the following principles to reduce the phase shift between instantaneous analogue and discrete signals and the corresponding values in the SV stream. 1) Exclusion from the device, of non-essential elements that introduce additional propagation delays of analogue and discrete signals, provided that such exclusion does not adversely affect the device performance or characteristics. 2) Reduction of the delay time for the other device elements to the minimum values. 3) Adjustment of the delay time of some device elements or addition of special delay elements to equalize the time of signal propagation over analogue and discrete channels. 4) Consideration of the total delay time of signal propagation over analogue and discrete channels and adjustment of the time stamp in the SV frame. The article provides examples of application of these principles in signal generation and measuring devices and phase shift meters.
机译:关于数字变电站,有许多公开可用的文章,包括专门针对电流和电压测量,时间同步,测试系统开发,变电站设计原理以及本主题其他方面的文章。但是,很少讨论瞬时信号和SV(采样值)流中的相应值之间的相移。我们可以列出以下原理,以减少瞬时模拟信号和离散信号之间的相移以及SV流中的相应值。 1)从设备中排除引入了模拟和离散信号额外传播延迟的非必要元素,条件是这种排除不会对设备的性能或特性产生不利影响。 2)将其他设备元件的延迟时间减少到最小值。 3)调整某些设备元件的延迟时间或添加特殊的延迟元件,以均衡信号在模拟和离散通道上的传播时间。 4)考虑信号在模拟和离散通道上传播的总延迟时间,并调整SV帧中的时间戳。本文提供了这些原理在信号生成和测量设备以及相移仪中的应用示例。

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