Novel automatic model construction method for the rapid characterization of petroleum properties from near-infrared spectroscopy
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- @Article{YU:2022:Fuel,
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author = "Huijing Yu and Xinjie Wang and Feifei Shen and
Jian Long and Wenli Du",
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title = "Novel automatic model construction method for the
rapid characterization of petroleum properties from
near-infrared spectroscopy",
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journal = "Fuel",
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volume = "316",
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pages = "123101",
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year = "2022",
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ISSN = "0016-2361",
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DOI = "doi:10.1016/j.fuel.2021.123101",
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URL = "https://www.sciencedirect.com/science/article/pii/S0016236121029616",
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keywords = "genetic algorithms, genetic programming, Petroleum,
Chemometrics, Near-infrared spectroscopy, Automatic
model construction, Nonlinearity",
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abstract = "Petroleum fuels play an important role in economic
society, and near-infrared analysis has been widely
used in the characterization of petroleum fuels due to
its effectiveness and efficiency. However,
near-infrared spectra are high dimensional data that
require high computational cost, thereby complicating
the practical application. Previous model construction
methods are also restricted to pre-designed model
structure, thus limiting the model construction
ability. To solve these problems, this paper proposes
an automatic model construction algorithm that
increases the diversity of model structure with
linear-in-parameter representation and optimizes the
model structure with genetic programming. The proposed
automatic construction algorithm is verified on
datasets from literature and experiments with real
petroleum products compared with Partial Least Square
(PLS) and Support Vector Machine Regression (SVR). The
proposed method outperforms PLS and SVR in overall
predictive accuracy and reduces the involved variable
number by at least 70percent during the model
construction process. Good performance in prediction
accuracy, model complexity, and interpretability on the
rapid characterization of different petroleum products
can assist refinery plant in product control and
management during production",
- }
Genetic Programming entries for
Huijing Yu
Xinjie Wang
Feifei Shen
Jian Long
Wenli Du
Citations