稳定控制装置数字采样的设计与实现

Jilin Wang, Yimin Liu, G. Xu, Yunsong Yan, Xijian Dong, Zhukun Li
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引用次数: 0

摘要

在智能变电站中,电网安全稳定控制装置作为跨台设备,同时接收和处理多个区间的采样量。为了解决稳控装置“直接采样”模式下的交叉间隔采样同步问题,提出了一种基于本地时间戳的同步与重采样插值相结合的方法。基于系统辅助时钟支持的本地时间戳采样数据,同步重采样并按重采样间隔进行线性插值,分析了线性插值误差。最后,基于FPGA和DSP硬件平台实现了稳定控制装置的数字采样。为了从采样精度和同步有效性两方面验证本文提出的基于本地时间戳的同步重采样插值算法的时效性和可行性,搭建了实验系统。实验结果表明,基于本地时间戳的同步线性重采样方法满足实际工程中稳定控制装置的实时性和精度要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Implementation of Digital Sampling for Stability Control Device
The power grid security and stability control device, as cross-bay equipment, receives and processes the sampling quantity of multiple intervals at the same time in Smart Substation. In order to solve the problem of crossinterval sampling synchronization in the “Direct Sampling” mode of stability control device, a method of combining synchronization and resampling interpolation based on local time stamp based is proposed. The sampling data based on the local time stamp which supported by system auxiliary clock, resampled synchronously and linearly interpolated at resampling interval, and analyzed the linear interpolation error. Finally, Implement the digital sampling of the stability control device based on FPGA and DSP hardware platform. In order to verify the time effectiveness and feasibility of the synchronous resampling interpolation algorithm based on local time stamp proposed in this paper from the aspects of sampling accuracy and synchronization effectiveness, an experimental system is built. The results of experiment prove that the synchronous linear resampling method based on local time stamp meets the real-time and precision requirements of the stability control device in practical engineering.
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