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Some non-uniform rational B-splines (NURBS) control techniques, such as curves with an embedded line, a sharp angle, and so on, were used to verify the proposed method's compatibility with NURBS.
      
Research of user access control for networked manufacturing system
      
An integrated user access control method was proposed to address the issues of security and management in networked manufacturing systems (NMS).
      
The extensible access control markup language (XACML) was used to implement this method.
      
The results show that the integrated user access control method can reduce the costs of system security maintenance and management.
      
A topology control algorithm for preserving minimum-energy paths in wireless ad hoc networks
      
In this paper, a distributed topology control algorithm is proposed.
      
Simulation results show that the proposed algorithm has advantages over the topology control algorithm based on direct-transmission region in terms of average node degree and power efficiency.
      
A distributed synchronous reservation multiple access control protocol for mobile Ad hoc networks
      
The single-input single-output (SISO) j-step-ahead predictor for generalized predictive control (GPC) controllers was traditionally derived using the polynomial approach through the Diophantine equations.
      
Biped robot control strategy and open-closed-loop iterative learning control
      
Master-slaver dual-leg coordination control was proposed for the biped robot with heterogeneous legs (BRHL), in order to reduce gait planning and to get a good tracking performance.
      
The key to coordination is gait trajectory tracking control.
      
P-type open-closed-loop iterative learning control (ILC) is not based on model parameters and has advantages in both open-loop and closed-loop ILC; so this paper proposes a complex robot gait trajectory tracking.
      
The results show that this control strategy and algorithm are effective and robust, and the convergence speed is better than separate open-loop or closed-loop ILC.
      
The results are helpful for the optimal design of the generator and the optimal control of exciting-winding.
      
In the design, the finite state machine (FSM) is used well to control the flow.
      
The development of the theory on quantum systems control in the last 20 years is reviewed in detail.
      
The research on the controllability of quantum systems is first introduced, then the study on the quantum open-loop control methods often used for controlling simple quantum systems is analyzed briefly.
      
The learning control method and the feedback control method are mainly discussed for they are two important methods in quantum systems control and their advantages and disadvantages are presented.
      
 

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