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Shuang-Hua Yang's research work on safety and security of Cyber-Physical Systems (CPS) proposed a series of approaches in the stages of intrusion detection, intrusion response and recovery for ensuring the functional safety and information security for CPS. The ways of identifying and eliminating contradictions between security and safety requirements, intrusion tolerant control strategies and online risk assessment approaches form his novel contributions to the field.
Shuang-Hua Yang's research work on wireless network-based monitoring and control is seminal in the field of wireless communication, and has led to a whole new sub-field, entitled wireless monitoring and control, which has had high impact in both research and commercial technology. His pioneering work on Internet-based control has had significant impact on industrial internet research and industrial communities. He has authored two research monographs on Internet-based control and wireless sensor networks respectively with over 100K downloads. He invented a new nonintrusive water flowrate sensing technology (patented), a new LoRa based wireless communication protocol (patented), a new direction switchable security gateway (patented), a new energy harvest technology, an adaptive wireless tracking system (UWB) (patented) and a virtual home-based security protection approach. The LoRa based communication protocol and module have been commercialized and widely deployed in Chinese industries. UWB based tracking systems have been deployed in CNOOC (China National Offshore Oil Corporation) and ZigBee based solutions have been applied by Toyota UK and Toys R Us logistic in the UK.
Shuang-Hua Yang's recent research work on air pollution monitoring focuses on source term estimation with deficient sensors. For chemical industrial parks (CIPs), he gave a theoretical definition of traceability as a general criterion to determine whether a STE problem has a unique solution. Conditions which should be met are derived in order to convert an untraceable problem into a partially traceable or a full traceable one. Using this theoretical result, micro stationary monitoring stations, mobile monitoring vehicles, unmanned aerial vehicle (UAV) are employed and the STE algorithms are developed and applied in a real CIP and still in operation.
Shuang-Hua Yang's research work on wireless network-based monitoring and control is seminal in the field of wireless communication, and has led to a whole new sub-field, entitled wireless monitoring and control, which has had high impact in both research and commercial technology. His pioneering work on Internet-based control has had significant impact on industrial internet research and industrial communities. He has authored two research monographs on Internet-based control and wireless sensor networks respectively with over 100K downloads. He invented a new nonintrusive water flowrate sensing technology (patented), a new LoRa based wireless communication protocol (patented), a new direction switchable security gateway (patented), a new energy harvest technology, an adaptive wireless tracking system (UWB) (patented) and a virtual home-based security protection approach. The LoRa based communication protocol and module have been commercialized and widely deployed in Chinese industries. UWB based tracking systems have been deployed in CNOOC (China National Offshore Oil Corporation) and ZigBee based solutions have been applied by Toyota UK and Toys R Us logistic in the UK.
Shuang-Hua Yang's recent research work on air pollution monitoring focuses on source term estimation with deficient sensors. For chemical industrial parks (CIPs), he gave a theoretical definition of traceability as a general criterion to determine whether a STE problem has a unique solution. Conditions which should be met are derived in order to convert an untraceable problem into a partially traceable or a full traceable one. Using this theoretical result, micro stationary monitoring stations, mobile monitoring vehicles, unmanned aerial vehicle (UAV) are employed and the STE algorithms are developed and applied in a real CIP and still in operation.
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IEEE Internet Things J.no. 7 (2024): 12033-12057
IEEE INTERNET OF THINGS JOURNALno. 2 (2024): 3473-3483
PROCESSESno. 12 (2023): 3419
Advances in Guidance, Navigation and Controlpp.5092-5102, (2023)
International Journal of Network Dynamics and Intelligencepp.4-19, (2022)
2022 IEEE International Conferences on Internet of Things (iThings) and IEEE Green Computing & Communications (GreenCom) and IEEE Cyber, Physical & Social Computing (CPSCom) and IEEE Smart Data (SmartData) and IEEE Congress on Cybermatics (Cybermatics)pp.161-167, (2022)
2022 IEEE 27th Pacific Rim International Symposium on Dependable Computing (PRDC)pp.89-97, (2022)
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