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A Survey on Model-Based Distributed Control and Filtering for Industrial Cyber-Physical Systems

IEEE Transactions on Industrial Informatics · 2019 · Vol. 15(5) · pp. 2483–2499
Derui DingQing‐Long HanZidong WangXiaohua Ge

Abstract

Industrial cyber-physical systems (CPSs) are large-scale, geographically dispersed, and life-critical systems, in which lots of sensors and actuators are embedded and networked together to facilitate real-time monitoring and closed-loop control. Their intrinsic features in geographic space and resources put forward to urgent requirements of reliability and scalability for designed filtering or control schemes. This paper presents a review of the state-of-the-art of distributed filtering and control of industrial CPSs described by differential dynamics models. Special attention is paid to sensor networks, manipulators, and power systems. For real-time monitoring, some typical Kalman-based distributed algorithms are summarized and their performances on calculation burden and communication burden, as well as scalability, are discussed in depth. Then, the characteristics of non-Kalman cases are further disclosed in light of constructed filter structures. Furthermore, the latest development is surveyed for distributed cooperative control of mobile manipulators and distributed model predictive control in industrial automation systems. By resorting to droop characteristics, representative distributed control strategies classified by controller structures are systematically summarized for power systems with the requirements of power sharing and voltage and frequency regulation. In addition, distributed security control of industrial CPSs is reviewed when cyber-attacks are taken into consideration. Finally, some challenges are raised to guide the future research.

Smart Grid Security and ResilienceAdvanced Control Systems OptimizationMicrogrid Control and OptimizationCyber-physical systemKalman filterScalabilityIndustrial control systemVoltage droopComputer scienceControl engineeringAutomationDistributed computingReliability (semiconductor)

Funding

  • Natural Science Foundation of Shanghai
  • National Natural Science Foundation of China
  • Australian Research Council
Citations
488
FWCI
54.64
field-weighted impact
References
157
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100%
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References
Secondary Frequency and Voltage Control of Islanded Microgrids via Distributed Averaging
IEEE Transactions on Industrial Electronics · 2015 · 934 citations
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IEEE Transactions on Power Electronics · 2013 · 1,046 citations
Distributed Cooperative Secondary Control of Microgrids Using Feedback Linearization
IEEE Transactions on Power Systems · 2013 · 892 citations
Diffusion Least-Mean Squares Over Adaptive Networks: Formulation and Performance Analysis
IEEE Transactions on Signal Processing · 2008 · 1,104 citations
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