Sensors · 2022 · 26 citations · 37 references
EngineeringMine VentilationWireless Sensor SystemVentilationEfficient Graphical AlgorithmCivil EngineeringSensor DistributionComputer EngineeringSystems EngineeringAir Volume ReconstructionSensor OptimizationFansWell-posed AirflowSensor PlacementFlow MeasurementAirflow Reconstruction ProblemAir ConditioningCoal Mine
Accurate monitoring of ventilation parameters is essential for intelligent mine ventilation systems. This study develops a method to reconstruct airflow with few sensors by introducing an independent cut set concept to determine minimal sensor placement. The independent cut set approach was applied and evaluated in a Jinmei Corporation coal mine to assess its effectiveness. The algorithm required sensors in fewer than 30% of tunnels, accurately reconstructed the ventilation network’s air volume, and proved feasible, offering theoretical support for flow reconstruction.
The accurate and reliable monitoring of ventilation parameters is key to intelligent ventilation systems. In order to realize the visualization of airflow, it is essential to solve the airflow reconstruction problem using few sensors. In this study, a new concept called independent cut set that depends on the structure of the underlying graph is presented to determine the minimum number and location of sensors. We evaluated its effectiveness in a coal mine owned by Jinmei Corporation Limited (Jinmei Co., Ltd., Shanghai, China). Our results indicated that fewer than 30% of tunnels needed to have wind speed sensors set up to reconstruct the well-posed airflow of all the tunnels (>200 in some mines). The results showed that the algorithm was feasible. The reconstructed air volume of the ventilation network using this algorithm was the same as the actual air volume. The algorithm provides theoretical support for flow reconstruction.
37
Velocity-Free MS/AE Source Location Method for Three-Dimensional Hole-Containing Structures
Longjun Dong, Qingchun Hu, Xiaojie Tong et al. · Engineering · 2020 · 141 citations · Full text