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首页> 外文期刊>IEEE Transactions on Power Delivery >Improved Transient Data Compression Algorithm Based on Wavelet Spectral Quantization Models
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Improved Transient Data Compression Algorithm Based on Wavelet Spectral Quantization Models

机译:基于小波谱量化模型的改进的瞬态数据压缩算法

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摘要

In this work a dedicated encoding algorithm is presented for current and voltage transient signals digitalized from electrical networks. New models for dynamic bit allocation based on adaptive and fixed spectral envelope estimation models for transformed coefficients are proposed. The fixed profiles adjust the number of bits to be used by the wavelet transform decomposition level, which is used in the transformed vector quantization. The models proposed to estimate the adaptive spectral envelope have the transformed spectrum segmented by subbands or by decomposition levels of the wavelet transform. The dynamic bit allocation is implemented according to the signal spectral behavior. The quantized coefficient vector is encoded using an entropy coder, and it is asynchronously packaged in a compressed file. A parametric configuration for optimization algorithm is also proposed for the fixed spectral profile models in order to improve performance. Simulation results are presented using a signal data bank with a set of reported events of electric power networks. Performance comparisons with other work are also presented.
机译:在该工作中,呈现专用编码算法,用于从电网数字化的电流和电压瞬态信号。提出了基于自适应和固定频谱包络估计变换系数的动态比特分配的新模型。固定配置文件调整小波变换分解级别的比特数,其用于变换的矢量量化。建议估计自适应频谱包络的​​模型具有由子带分段的变换的频谱或通过小波变换的分解水平。根据信号光谱行为实现动态比特分配。使用熵编码器编码量化系数矢量,并且在压缩文件中异步包装。还提出了用于固定光谱配置文件模型的优化算法的参数配置,以提高性能。使用具有一组报告的电力网络事件的信号数据库呈现仿真结果。还提出了与其他工作的性能比较。

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