Browsing by Author "Rohani J.M."
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Publication Charge coupled device based on optical tomography system in detecting air bubbles in crystal clear water(Elsevier Ltd, 2016) ;Juliza Jamaludin ;Rahim R.A. ;Rahim H.A. ;Fazalul Rahiman M.H. ;Mohd Muji S.Z. ;Rohani J.M. ;Faculty of Science and Technology ;Universiti Teknologi Malaysia (UTM) ;Universiti Sains Islam Malaysia (USIM) ;Universiti Malaysia Perlis (UniMAP) ;Universiti Tun Hussein Onn Malaysia (UTHM)Sondotech Sdn. BhdOptical tomography is one of the tomography methods which are non-invasive and non-intrusive system, consisting of emitter with detectors. Most of the available detectors systems are intrusive where sensors or probes need to be placed within the analyzed processes and this will create disturbances in the current processes. This research are conducted in order to analyze and proved the capability of laser with Charge Coupled Device in an optical tomography system for detecting air bubbles exist in crystal clear water. Experiments in detecting moving air bubbles are conducted. The images of captured data are reconstructed based on filtered image of Linear Back Projection with Hybrid algorithms. As a conclusion, this research have successfully developed an optical tomography system that capable to capture the image and measure the diameter and velocity of rising air bubbles in a non-flowing crystal clear water. � 2016 Elsevier Ltd. - Some of the metrics are blocked by yourconsent settings
Publication Charge-Coupled device based on optical tomography system for monitoring multiphase flow(Penerbit UTHM, 2017) ;Jamaludin J. ;Rahim R.A. ;Rahiman M.H.F. ;Muji S.Z.M. ;Rohani J.M. ;Wahab Y.A. ;Faculty of Engineering and Built Environment ;Universiti Sains Islam Malaysia (USIM) ;Universiti Tuen Hussien Onn Malaysia (UTHM) ;Universiti Malaysia Perlis (UniMAP) ;Jemmy Mohd Rohani EnterpriseUniversiti Malaysia Pahang (UMP)Tomography is a method to capture a cross-sectional image based on the data obtained by sensors, distributed around the periphery of the analyzed system. Optical tomography is one of the tomography methods which are non-invasive and non-intrusive system, consisting of emitter with detectors. Combinations of Charge-Coupled Device and low intensity laser diode are used in this research. Experiments on air bubbles detecting in non-flowing crystal clear water are conducted. Cross-sectional image of two phase flow; air and liquid are captured using this optical hardware construction and the information on air diameter, shape and path are observed using LabVIEW programming. � 2017 UTHM Publisher. All right reserved. - Some of the metrics are blocked by yourconsent settings
Publication Charge-coupled device based on optical tomography system for monitoring two-phase flow(Institution of Engineering and Technology, 2017) ;Jamaludin J. ;Rahim R.A. ;Rahim H.A. ;Rahiman M.H.F. ;Rohani J.M. ;Faculty of Engineering and Built Environment ;Universiti Sains Islam Malaysia (USIM) ;UniversitI Tun Hussein Onn Malaysia (UTHM) ;Universiti Teknologi Malaysia (UTM) ;Universiti Malaysia Perlis (UniMAP)Sondotech SDN. BhdAn application of charge-coupled device (CCD) linear sensor and laser diode in an optical tomography (OPT) system is presented. The measurements are based on the final light intensity received by the sensor. The aim is to analyse and demonstrate the capability of laser with a CCD in an OPT system for detecting transparent objects in crystal clear water. The image reconstruction algorithms used were filtered images of linear back projection algorithms. These algorithms were programmed using LabVIEW programming software. Experiments in detecting transparent hollow straw were conducted. Based on the results, statistical analysis was performed to verify that the captured data were valid compared with the actual object data. The object's characteristics such as diameter also are observed. In conclusion, a non-intrusive and non-invasive OPT system that can detect transparent objects in crystal clear water is successfully developed. � The Institution of Engineering and Technology 2017. - Some of the metrics are blocked by yourconsent settings
Publication Charge-coupled device based on optical tomography system in detecting solid and transparent objects in non-flowing crystal clear water(Elsevier GmbH, 2017) ;Jamaludin J. ;Rahim R.A. ;Rahim H.B.A. ;Rahiman M.H.F. ;Rohani J.M. ;Muji S.Z.B.M. ;Faculty of Engineering and Built Environment ;Universiti Teknologi Malaysia (UTM) ;Universiti Sains Islam Malaysia (USIM) ;Universiti Tun Hussein Onn Malaysia (UTHM) ;Universiti Malaysia Perlis (UniMAP)Sondotech Sdn. BhdTomography is a method to capture a cross-sectional image based on the data obtained by sensors, distributed around the periphery of the analyzed system. Optical tomography is one of the tomography methods which are non-invasive and non-intrusive system, consisting of emitter with detectors. Most of the available detectors systems are intrusive where sensors or probes need to be placed within the analyzed processes and this will create disturbances in the current processes. This research are conducted in order to analyze and proved the capability of laser with Charge Coupled Device in an optical tomography system for detecting difference type of opacity object exist in crystal clear water. Experiments in detecting static solid, transparent objects and moving air bubbles are conducted. The images of captured data are reconstructed based on filtered image of Linear Back Projection with Hybrid algorithms. As a conclusion, this research have successfully developed an optical tomography system that capable to capture the image of high to low opacity objects in a non-flowing crystal clear water. � 2016 Elsevier GmbH - Some of the metrics are blocked by yourconsent settings
Publication Cyber-Physical System (CPS): State of the art(Institute of Electrical and Electronics Engineers Inc., 2019) ;Juliza Jamaludin ;Rohani J.M. ;Faculty of Engineering and Built Environment ;Universiti Sains Islam Malaysia (USIM)Jemmy Mohd Rohani EnterpriseCyber-Physical System (CPS) plays an important role in today's cyber world. Without the existence of the advancements of CPS technologies and knowledge's, we will having difficulties for long distance control and communications. Most of the recent research are discussing on the external threat to the CPS. The external threat will affect the industries and surveillance. Our routine may disturbed by a single cyber-attack to the CPS network at it will caused a loss of money and damages. This review paper discussed in details on the state of the art of CPS. The two main criteria of CPS which being discussed in this review paper are, CPS characteristic and CPS architectures. Deep studies on CPS characteristic and architectures are important to understand its functionality and to identify the weakness of the system. More research need to be conducted on CPS security and performance due to the extensive growing of the 4 th industrial revolution. � 2018 IEEE. - Some of the metrics are blocked by yourconsent settings
Publication Optical tomography system using Charge-Coupled Device for transparent object detection(Penerbit UTHM, 2018) ;Jamaludin J. ;Rahim R.A. ;Rahiman M.H.F. ;Wahab Y.A. ;Rohani J.M. ;Sahrim M. ;Wan Zakiah Wan Ismail ;Irneza Ismail ;Balakrishnan S.R. ;Faculty of Engineering and Built Environment ;Universiti Sains Islam Malaysia (USIM) ;Universiti Tun Hussein Onn Malaysia (UTHM) ;Universiti Teknologi Malaysia (UTM) ;Universiti Malaysia Perlis (UniMAP) ;Universiti Malaysia Pahang (UMP)Jemmy Mohd Rohani EnterpriseThis research presents an application of Charge-Coupled Device (CCD) linear sensor and laser diode in an optical tomography system. Optical tomography is a non-invasive and non-intrusive method of capturing a cross-sectional image of multiphase flow. The measurements are based on the final light intensity received by the sensor and this approach is limited to detect solid objects only. The aim of this research is to analyse and demonstrate the capability of laser with a CCD in an optical tomography system for detecting objects with different clarity in crystal clear water. Experiments for detecting transparent objects were conducted. The object's diameter and image reconstruction can also be observed. As a conclusion, this research has successfully developed a non-intrusive and non-invasive optical tomography system that can detect objects in crystal clear water. � Penerbit UTHM.