Quantum computing technologies are in the process of moving from academic research to real industrial applications, with the first hints of quantum advantage demonstrated in recent months. In these early practical uses of quantum computers it is relevant to develop algorithms that are useful for actual industrial processes. In this work we propose a quantum pipeline, comprising a quantum autoencoder followed by a quantum classifier, which are used to first compress and then label classical data coming from a separator, i.e., a machine used in one of Eni's Oil Treatment Plants. This work represents one of the first attempts to integrate quantum computing procedures in a real-case scenario of an industrial pipeline, in particular using actual data coming from physical machines, rather than pedagogical data from benchmark datasets.
翻译:量子计算技术正在从学术研究转向实际工业应用,近几个月来首次展示了量子优势的提示。在这些早期对量子计算机的实际使用中,有必要制定对实际工业过程有用的算法。在这项工作中,我们提议建立一个量子管道,由量子自动编码器组成,然后由量子分类器组成,用于首先压缩并贴上来自一个分离器的古典数据标签,即Eni的石油处理厂之一使用的机器。这项工作是首次尝试将量子计算程序纳入工业管道的实际情况,特别是使用物理机器的实际数据,而不是基准数据集的教学数据。