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Performance analysis of switching systems
R.A. Berg, van den
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Dissertatie 1 (Onderzoek TU/e / Promotie TU/e)
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Alfabetische volgorde
Engineering
Performance Analysis
100%
Convergent
100%
State Solution
100%
Switching Systems
100%
Nonlinear System
100%
Convergent System
83%
Frequency Response Function
50%
Feedback Control Systems
50%
Convergency
50%
Switched Linear System
50%
Experimental Result
33%
Linear Time Invariant
33%
Harmonics
33%
Invariant System
33%
Switching Rule
33%
Inventory Control
33%
Initial Condition
33%
Control Systems
16%
Gas Fuel Manufacture
16%
Nonlinearity
16%
Transients
16%
Simulation Time
16%
Input Signal
16%
Manufacturing Machine
16%
Assuming
16%
Reference Signal
16%
Discrete Event Simulation
16%
System Input
16%
Linear Controller
16%
Considered System
16%
State Behavior
16%
Saturation Nonlinearity
16%
System Requirement
16%
Multiple Steady State
16%
Harmonic Balance
16%
Design Method
16%
Continuous Time
16%
Balance Equation
16%
Controller Design
16%
Computer Science
Nonlinear System
100%
Performance Analysis
100%
Switching Systems
100%
Steady State Solution
66%
Approximation (Algorithm)
50%
Response Function
50%
Linear Systems
50%
Frequency Response
50%
linear time invariant system
33%
Experimental Result
33%
Initial Condition
33%
State Solution
33%
Unique Solution
16%
Linear Controller
16%
Discrete Event Simulation
16%
Finished Product
16%
Performance State
16%
Balance Equation
16%
Continuous Time
16%
Reference Signal
16%
System Requirement
16%
Simulation Time
16%
Uniformly Convergent
16%
Multiple Steady State
16%
Saturation Nonlinearity
16%
Mathematics
Nonlinear System
100%
State Solution
100%
Linear System
50%
Closed Loop
50%
Frequency Response Function
50%
Linear Approximation
33%
Initial Condition
33%
Nonlinearities
33%
Linear Time
33%
Invariant System
33%
Balance Equation
16%
Upper Bound
16%
unique solution φ
16%
Linear Part
16%
Steady State Behavior
16%
Controller Design
16%
Uniformly Convergent
16%
Input Signal
16%
Continuous Time
16%
Control System
16%
Linear Controller
16%
Chemical Engineering
Nonlinear System
100%
Closed Loop Systems
50%
Linear Systems
50%