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A two-domain real-time algorithm for optimal data reduction: a case study on accelerator magnet measurements

机译:一种用于优化数据约简的两域实时算法:以加速器磁体测量为例

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摘要

A real-time algorithm of data reduction, based on the combination of two lossy techniques specifically optimized for high-rate magnetic measurements in two domains (e.g. time and space), is proposed. The first technique exploits an adaptive sampling rule based on the power estimation of the flux increments in order to optimize the information to be gathered for magnetic field analysis in real time. The tracking condition is defined by the target noise level in the Nyquist band required by the post-processing procedure of magnetic analysis. The second technique uses a data reduction algorithm in order to improve the compression ratio while preserving the consistency of the measured signal. The allowed loss is set equal to the random noise level in the signal in order to force the loss and the noise to cancel rather than to add, by improving the signal-to-noise ratio. Numerical analysis and experimental results of on-field performance characterization and validation for two case studies of magnetic measurement systems for testing magnets of the Large Hadron Collider at the European Organization for Nuclear Research (CERN) are reported.
机译:提出了一种实时数据缩减算法,该算法基于两种有损技术的组合,这些技术专门针对两个领域(例如时间和空间)中的高速率磁测量进行了优化。第一种技术利用基于通量增量的功率估计的自适应采样规则,以优化要收集的信息,以便实时进行磁场分析。跟踪条件由磁分析的后处理过程所需的奈奎斯特频带中的目标噪声水平定义。第二种技术使用数据缩减算法,以提高压缩率,同时保留测量信号的一致性。通过提高信噪比,将允许的损耗设置为等于信号中的随机噪声电平,以迫使损耗和噪声消除而不是相加。报告了欧洲核研究组织(CERN)的大型强子对撞机磁体测试用磁测量系统的两个案例研究的现场性能表征和验证的数值分析和实验结果。

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