首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Adaptive reshaping of objects in (multiparameter) Hilbert space for enhanced detection and classification: an application of receiver operating curve statistics to laser-based mass spectroscopy
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Adaptive reshaping of objects in (multiparameter) Hilbert space for enhanced detection and classification: an application of receiver operating curve statistics to laser-based mass spectroscopy

机译:自适应重塑(多参数)Hilbert空间中的对象以增强检测和分类:接收器工作曲线统计在基于激光的质谱中的应用

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摘要

We propose a new approach to the classical detection problem of discrimination of a true signal of interest from an interferent signal, which may be applied to the area of chemical sensing. We show that the detection performance, as quantified by the receiver operating curve (ROC), can be substantially improved when the signal is represented by a multicomponent data set that is actively manipulated by means of a shaped laser probe pulse. In this case, the signal sought (agent) and the interfering signal (interferent) are visualized by vectors in a multidimensional detection space. Separation of these vectors can be achieved by adaptive modification of a probing laser pulse to actively manipulate the Hamiltonian of the agent and interferent. We demonstrate one implementation of the concept of adaptive rotation of signal vectors to chemical agent detection by means of strong-field time-of-flight mass spectrometry.
机译:我们提出了一种新的方法来解决经典检测问题,即从干扰信号中区分出感兴趣的真实信号,该方法可以应用于化学传感领域。我们表明,当信号由多分量数据集表示时,通过接收器工作曲线(ROC)进行量化,检测性能可以得到显着改善,该数据集是通过成形激光探针脉冲进行主动操作的。在这种情况下,通过多维检测空间中的向量可视化所寻求的信号(代理)和干扰信号(干扰)。这些向量的分离可以通过对探测激光脉冲进行自适应修改以主动控制试剂和干扰物的哈密顿量来实现。我们展示了一种通过强场飞行时间质谱法将信号向量自适应旋转至化学试剂检测的概念的实现方式。

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