配电网测量数据的实时压缩

Reza Parseh, S. Acevedo, K. Kansanen, M. Molinas, T. Ramstad
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引用次数: 7

摘要

考虑了电网中电压和电流测量的实时有损压缩。假设需要将压缩版本的测量数据传输到控制中心以用于线路电压补偿。这就需要严格的延迟和高精度要求。通过对连续样本进行微分量化,获得高压缩,同时保持高质量的重建。通过对信号进行逐采样处理,使零延迟成为可能。该方案由两个自适应量化器组成,对电压和电流信号的变换版本使用帕克变换。量化器包含一个基于变换信号的频谱特性的预测器。目标是尽可能有效地压缩测量结果,同时将电压保持在电网标准规定的值内。然后将该方案应用于具有电压源变换器控制器的微电网模型。研究和讨论了从标称值的偏差来看,电网电压和电流的压缩比和质量之间的权衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Real-time compression of measurements in distribution grids
Real-time lossy compression of voltage and current measurements in an electrical grid is considered. It is assumed that a compressed version of measurements needs to be transmitted to the control center to be used for line voltage compensation. This necessitates tight delay and high accuracy requirements. Acquiring high compression, while also maintaining a high-quality reconstruction is achieved via differential quantization of consecutive samples. Zero delay is made possible using sample-by-sample processing of signals. The proposed scheme consists of two adaptive quantizers on transformed versions of voltage and current signals using Park's transform. The quantizers incorporate a predictor which is based on spectral characteristics of the transformed signals. The objective is to compress the measurements as efficiently as possible, while keeping the voltage within the stipulated values by grid standards. The suggested scheme is then applied in a model of a micro-grid with a voltage source converter based controller. The trade-off between compression ratio and quality of the grid voltage and current in terms of deviation from nominal values is studied and discussed.
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