linear models toolbox Search Results


95
MathWorks Inc empc controller toolbox
FIGURE 4. A schematic structure diagram of the marine turbine system with the <t>EMPC</t> control strategy.
Empc Controller Toolbox, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 95/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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96
MathWorks Inc matlab non linear regression
FIGURE 4. A schematic structure diagram of the marine turbine system with the <t>EMPC</t> control strategy.
Matlab Non Linear Regression, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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94
MathWorks Inc ship navigation model
FIGURE 4. A schematic structure diagram of the marine turbine system with the <t>EMPC</t> control strategy.
Ship Navigation Model, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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96
MathWorks Inc machine learning toolbox
FIGURE 4. A schematic structure diagram of the marine turbine system with the <t>EMPC</t> control strategy.
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96
MathWorks Inc matlab control system toolbox
FIGURE 4. A schematic structure diagram of the marine turbine system with the <t>EMPC</t> control strategy.
Matlab Control System Toolbox, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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96
MathWorks Inc canlabcore toolbox
FIGURE 4. A schematic structure diagram of the marine turbine system with the <t>EMPC</t> control strategy.
Canlabcore Toolbox, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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97
MathWorks Inc integer linear optimization model
FIGURE 4. A schematic structure diagram of the marine turbine system with the <t>EMPC</t> control strategy.
Integer Linear Optimization Model, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 97/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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96
MathWorks Inc non linear regression
FIGURE 4. A schematic structure diagram of the marine turbine system with the <t>EMPC</t> control strategy.
Non Linear Regression, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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96
MathWorks Inc linear analysis toolbox lat
FIGURE 4. A schematic structure diagram of the marine turbine system with the <t>EMPC</t> control strategy.
Linear Analysis Toolbox Lat, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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96
MathWorks Inc meeg data
FIGURE 4. A schematic structure diagram of the marine turbine system with the <t>EMPC</t> control strategy.
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93
MathWorks Inc matlab non linear regression function
FIGURE 4. A schematic structure diagram of the marine turbine system with the <t>EMPC</t> control strategy.
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MathWorks Inc symbolic math tool box
FIGURE 4. A schematic structure diagram of the marine turbine system with the <t>EMPC</t> control strategy.
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Image Search Results


FIGURE 4. A schematic structure diagram of the marine turbine system with the EMPC control strategy.

Journal: IEEE Access

Article Title: Optimal Control Design of Generator Systems for Marine Current Turbine Applications Using Economic Model Predictive Control

doi: 10.1109/access.2020.3038472

Figure Lengend Snippet: FIGURE 4. A schematic structure diagram of the marine turbine system with the EMPC control strategy.

Article Snippet: Firstly, the nonlinear system is equivalent to a linear system, and then the EMPC controller toolbox in Simulink is used to act on the linear system to meet the control requirements.

Techniques: Control

FIGURE 7. A comparison of the marine current generation power between the traditional MPC and the eMPC.

Journal: IEEE Access

Article Title: Optimal Control Design of Generator Systems for Marine Current Turbine Applications Using Economic Model Predictive Control

doi: 10.1109/access.2020.3038472

Figure Lengend Snippet: FIGURE 7. A comparison of the marine current generation power between the traditional MPC and the eMPC.

Article Snippet: Firstly, the nonlinear system is equivalent to a linear system, and then the EMPC controller toolbox in Simulink is used to act on the linear system to meet the control requirements.

Techniques: Comparison

FIGURE 11. A comparison of the twist of the shaft between the traditional MPC and the eMPC.

Journal: IEEE Access

Article Title: Optimal Control Design of Generator Systems for Marine Current Turbine Applications Using Economic Model Predictive Control

doi: 10.1109/access.2020.3038472

Figure Lengend Snippet: FIGURE 11. A comparison of the twist of the shaft between the traditional MPC and the eMPC.

Article Snippet: Firstly, the nonlinear system is equivalent to a linear system, and then the EMPC controller toolbox in Simulink is used to act on the linear system to meet the control requirements.

Techniques: Comparison

FIGURE 10. A comparison of the angular velocity of genegrator input side between the traditional MPC and the eMPC.

Journal: IEEE Access

Article Title: Optimal Control Design of Generator Systems for Marine Current Turbine Applications Using Economic Model Predictive Control

doi: 10.1109/access.2020.3038472

Figure Lengend Snippet: FIGURE 10. A comparison of the angular velocity of genegrator input side between the traditional MPC and the eMPC.

Article Snippet: Firstly, the nonlinear system is equivalent to a linear system, and then the EMPC controller toolbox in Simulink is used to act on the linear system to meet the control requirements.

Techniques: Comparison

FIGURE 9. A comparison of the Cost of the generator between the traditional MPC and the eMPC.

Journal: IEEE Access

Article Title: Optimal Control Design of Generator Systems for Marine Current Turbine Applications Using Economic Model Predictive Control

doi: 10.1109/access.2020.3038472

Figure Lengend Snippet: FIGURE 9. A comparison of the Cost of the generator between the traditional MPC and the eMPC.

Article Snippet: Firstly, the nonlinear system is equivalent to a linear system, and then the EMPC controller toolbox in Simulink is used to act on the linear system to meet the control requirements.

Techniques: Comparison

FIGURE 8. A comparison of the torque control of the generator between the traditional MPC and the eMPC.

Journal: IEEE Access

Article Title: Optimal Control Design of Generator Systems for Marine Current Turbine Applications Using Economic Model Predictive Control

doi: 10.1109/access.2020.3038472

Figure Lengend Snippet: FIGURE 8. A comparison of the torque control of the generator between the traditional MPC and the eMPC.

Article Snippet: Firstly, the nonlinear system is equivalent to a linear system, and then the EMPC controller toolbox in Simulink is used to act on the linear system to meet the control requirements.

Techniques: Comparison, Control

FIGURE 12. A comparison of the generator output torque between the traditional MPC and the eMPC.

Journal: IEEE Access

Article Title: Optimal Control Design of Generator Systems for Marine Current Turbine Applications Using Economic Model Predictive Control

doi: 10.1109/access.2020.3038472

Figure Lengend Snippet: FIGURE 12. A comparison of the generator output torque between the traditional MPC and the eMPC.

Article Snippet: Firstly, the nonlinear system is equivalent to a linear system, and then the EMPC controller toolbox in Simulink is used to act on the linear system to meet the control requirements.

Techniques: Comparison