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Hong Wang

Researcher at Northeastern University (China)

Publications -  561
Citations -  10554

Hong Wang is an academic researcher from Northeastern University (China). The author has contributed to research in topics: Nonlinear system & Probability density function. The author has an hindex of 47, co-authored 510 publications receiving 8952 citations. Previous affiliations of Hong Wang include Zhejiang University & Shenyang Institute of Automation.

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Journal Article

On design of simply structured robust controllers

TL;DR: In this article, the Gershgorin disks of a matrix may also be used to bind the singular values of the sensitivity and complementary sensitivity functions, which are subsequently used in the design of the diagonal dominance-based controller such that the mixed criteria on the loop transfer function sensitivities may be met.
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Fault diagnosis for unknown nonlinear systems via neural networks and its comparisons combinations with RLS based techniques

TL;DR: An algorithm for the detection and diagnosis of faults in sensors and actuators in unknown nonlinear systems is presented and a combination of both methods will provide a powerful technique for accurate fault diagnosis.
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Linearized controller design for the output pdfs using square root based B-spline models

TL;DR: A feedback control input has been obtained which guarantees the closed loop stability and realizes the perfect tracking by using this performance function as a Lyapunov function for theclosed loop system.
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Two-stage method and application for molten iron scheduling problem between iron-making plants and steel-making plants

TL;DR: In this article, a two-stage method is proposed to solve the molten iron scheduling problem (MISP), where a 0-1 mixed-integer nonlinear programming model is established for special type of MILP, and a heuristic algorithm based on the rule of first come first serve (FCFS) principle is established to solve normal type MILP.
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Robust satisfactory fault‐tolerant control of continuous‐time interval systems with time‐varying state and input delays

TL;DR: In this article, a delay-dependent satisfactory fault-tolerant controller design is developed based on multi-objective optimization strategy for interval systems with time-varying input and state delays in the case of possible actuator faults.