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Sensor data quality: a systematic review
by
Teh, Hui Yie
, Wang, Kevin I-Kai
, Kempa-Liehr, Andreas W.
in
Artificial neural networks
/ Bayesian analysis
/ Big Data
/ Communications Engineering
/ Computational Science and Engineering
/ Computer Science
/ Data analysis
/ Data mining
/ Data Mining and Knowledge Discovery
/ Data quality
/ Database Management
/ Datasets
/ Digital systems
/ Documents
/ Error analysis
/ Error correction
/ Error correction & detection
/ Error detection
/ Errors
/ Evaluation
/ Information Storage and Retrieval
/ Internet
/ Internet of Things
/ Mathematical Applications in Computer Science
/ Missing data
/ Networks
/ Neural networks
/ Outliers (statistics)
/ Principal components analysis
/ Sensor data error correction
/ Sensor data error detection
/ Sensor data quality
/ Sensors
/ Survey Paper
/ Systematic review
2020
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Sensor data quality: a systematic review
by
Teh, Hui Yie
, Wang, Kevin I-Kai
, Kempa-Liehr, Andreas W.
in
Artificial neural networks
/ Bayesian analysis
/ Big Data
/ Communications Engineering
/ Computational Science and Engineering
/ Computer Science
/ Data analysis
/ Data mining
/ Data Mining and Knowledge Discovery
/ Data quality
/ Database Management
/ Datasets
/ Digital systems
/ Documents
/ Error analysis
/ Error correction
/ Error correction & detection
/ Error detection
/ Errors
/ Evaluation
/ Information Storage and Retrieval
/ Internet
/ Internet of Things
/ Mathematical Applications in Computer Science
/ Missing data
/ Networks
/ Neural networks
/ Outliers (statistics)
/ Principal components analysis
/ Sensor data error correction
/ Sensor data error detection
/ Sensor data quality
/ Sensors
/ Survey Paper
/ Systematic review
2020
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Do you wish to request the book?
Sensor data quality: a systematic review
by
Teh, Hui Yie
, Wang, Kevin I-Kai
, Kempa-Liehr, Andreas W.
in
Artificial neural networks
/ Bayesian analysis
/ Big Data
/ Communications Engineering
/ Computational Science and Engineering
/ Computer Science
/ Data analysis
/ Data mining
/ Data Mining and Knowledge Discovery
/ Data quality
/ Database Management
/ Datasets
/ Digital systems
/ Documents
/ Error analysis
/ Error correction
/ Error correction & detection
/ Error detection
/ Errors
/ Evaluation
/ Information Storage and Retrieval
/ Internet
/ Internet of Things
/ Mathematical Applications in Computer Science
/ Missing data
/ Networks
/ Neural networks
/ Outliers (statistics)
/ Principal components analysis
/ Sensor data error correction
/ Sensor data error detection
/ Sensor data quality
/ Sensors
/ Survey Paper
/ Systematic review
2020
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Journal Article
Sensor data quality: a systematic review
2020
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Overview
Sensor data quality plays a vital role in Internet of Things (IoT) applications as they are rendered useless if the data quality is bad. This systematic review aims to provide an introduction and guide for researchers who are interested in quality-related issues of physical sensor data. The process and results of the systematic review are presented which aims to answer the following research questions: what are the different types of physical sensor data errors, how to quantify or detect those errors, how to correct them and what domains are the solutions in. Out of 6970 literatures obtained from three databases (ACM Digital Library, IEEE Xplore and ScienceDirect) using the search string refined via topic modelling, 57 publications were selected and examined. Results show that the different types of sensor data errors addressed by those papers are mostly missing data and faults e.g. outliers, bias and drift. The most common solutions for error detection are based on principal component analysis (PCA) and artificial neural network (ANN) which accounts for about 40% of all error detection papers found in the study. Similarly, for fault correction, PCA and ANN are among the most common, along with Bayesian Networks. Missing values on the other hand, are mostly imputed using Association Rule Mining. Other techniques include hybrid solutions that combine several data science methods to detect and correct the errors. Through this systematic review, it is found that the methods proposed to solve physical sensor data errors cannot be directly compared due to the non-uniform evaluation process and the high use of non-publicly available datasets. Bayesian data analysis done on the 57 selected publications also suggests that publications using publicly available datasets for method evaluation have higher citation rates.
Publisher
Springer International Publishing,Springer Nature B.V,SpringerOpen
Subject
/ Big Data
/ Computational Science and Engineering
/ Data Mining and Knowledge Discovery
/ Datasets
/ Error correction & detection
/ Errors
/ Information Storage and Retrieval
/ Internet
/ Mathematical Applications in Computer Science
/ Networks
/ Principal components analysis
/ Sensor data error correction
/ Sensors
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