Exact(3)
The power optimization problem is divided into two stages: The first stage is the admission control scheme design based on the QoS requirement of D2D users, and the second is power allocation to maximize aggregate throughput of admissible D2D users.
In order to implement the control scheme design, an aero-propulsion system component-level model is built to simulate the inlet working performance and the matching problems between the inlet and engine.
In the control scheme design, the modified variable separation approach is applied to establish the relationship between the bounded function of nonstrict-feedback nonlinear function and the error variable.
Similar(57)
This paper describes the composite avalanche control scheme designed to control the D-10 avalanche.
It is shown that satisfactory performances have been achieved by the optimal grey-fuzzy control scheme designed in this way.
Two simulation examples are provided to demonstrate the effectiveness of the control scheme designed in this paper.
First, to avoid a control scheme designed by trial-and-error only, since the physical consequences of catastrophic control loss in power systems makes such approaches difficult.
Computer simulations are performed to verify the effectiveness of the above optimal grey-fuzzy control scheme designed by the Taguchi-genetic method.
Computer simulations are performed to verify the effectiveness of the above optimal grey-fuzzy control scheme designed by the Taguchi method.
This paper presents a bilateral control scheme designed to achieve the two main goals of a teleoperation system: stability and transparency.
This paper proposes an actuator fault-tolerant control scheme designed for a class of nonlinear systems, and then applied to an underwater Remotely Operated Vehicle (ROV) used for inspection purposes.
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