로그인

Chapter 21

Modeling in Time and Frequency Domain

제어 시스템의 전달 함수
제어 시스템의 전달 함수
The transfer function is a mathematical representation that describes the system's output for each possible input in the frequency domain. Consider a ...
전기 시스템
전기 시스템
Electrical networks are first represented by equivalent circuits consisting of three passive linear components: resistors, capacitors, and inductors. ...
기계 시스템
기계 시스템
In mechanical systems, springs, and masses are akin to the roles of inductors and capacitors in electrical networks, with the energy-dissipating function ...
전기 기계 시스템
전기 기계 시스템
Electromechanical systems represent a unique blend of electrical and mechanical components that integrate seamlessly. A DC motor is a unit that transforms ...
Frequency Domain의 선형 근사(Linear Approximation in Frequency Domain)
Frequency Domain의 선형 근사(Linear Approximation in Frequency Domain)
Linear systems exhibit superposition, summing responses to individual inputs, and homogeneity, scaling responses consistently to an input multiplied by a ...
상태 공간 표현
상태 공간 표현
The frequency-domain technique, which is commonly used for analyzing and designing feedback control systems, is only suitable for linear, time-invariant ...
상태 공간으로의 전달 함수
상태 공간으로의 전달 함수
State-space representation is used for simulating physical systems on digital computers. For this, the transfer function must first be converted into ...
함수를 전달할 상태 공간
함수를 전달할 상태 공간
State-space representation can also be converted into a transfer function in system analysis. The transformation begins with the given state and output ...
시간 영역에서의 선형 근사(Linear Approximation in Time Domain)
시간 영역에서의 선형 근사(Linear Approximation in Time Domain)
Nonlinear systems find a superior modeling in state-space representation. Consider a simple pendulum represented in state-space with the center of mass at ...
JoVE Logo

개인 정보 보호

이용 약관

정책

연구

교육

JoVE 소개

Copyright © 2025 MyJoVE Corporation. 판권 소유