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相关概念视频

Linear time-invariant Systems01:23

Linear time-invariant Systems

222
A system is linear if it displays the characteristics of homogeneity and additivity, together termed the superposition property. This principle is fundamental in all linear systems. Linear time-invariant (LTI) systems include systems with linear elements and constant parameters.
The input-output behavior of an LTI system can be fully defined by its response to an impulsive excitation at its input. Once this impulse response is known, the system's reaction to any other input can be...
222
Feedback control systems01:26

Feedback control systems

293
Feedback control systems are categorized in various ways based on their design, analysis, and signal types.
Linear feedback systems are theoretical models that simplify analysis and design. These systems operate under the principle that their output is directly proportional to their input within certain ranges. For instance, an amplifier in a control system behaves linearly as long as the input signal remains within a specific range. However, most physical systems exhibit inherent nonlinearity...
293
BIBO stability of continuous and discrete -time systems01:24

BIBO stability of continuous and discrete -time systems

355
System stability is a fundamental concept in signal processing, often assessed using convolution. For a system to be considered bounded-input bounded-output (BIBO) stable, any bounded input signal must produce a bounded output signal. A bounded input signal is one where the modulus does not exceed a certain constant at any point in time.
To determine the BIBO stability, the convolution integral is utilized when a bounded continuous-time input is applied to a Linear Time-Invariant (LTI) system....
355
Open and closed-loop control systems01:17

Open and closed-loop control systems

667
Control systems are foundational elements in automation and engineering. They are broadly categorized into open-loop and closed-loop systems. These classifications hinge on the presence or absence of feedback mechanisms, significantly influencing the system's performance, complexity, and application.
An open-loop control system operates without feedback from the output. It consists of two primary elements: the controller and the controlled process. The controller receives an input signal...
667
Transfer Function in Control Systems01:21

Transfer Function in Control Systems

383
The transfer function is a fundamental concept in the analysis and design of linear time-invariant (LTI) systems. It offers a concise way to understand how a system responds to different inputs in the frequency domain. It serves as a bridge between the time-domain differential equations that describe system dynamics and the frequency-domain representation that facilitates easier manipulation and analysis.
To derive the transfer function, consider a general nth-order linear time-invariant...
383
Control System Problem01:21

Control System Problem

109
In an open-loop system, such as a basic thermostat, the poles of the transfer function influence the system's response but do not determine its stability. However, when feedback is introduced to form a closed-loop system, such as an advanced thermostat that adjusts heating based on room temperature, stability is governed by the new poles of the closed-loop transfer function.
When forming a closed-loop system, issues can arise if the poles cross into the unstable region, leading to potential...
109

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一类非线性跳跃系统的双层异步控制:一个间隔分割方法.

Linchuang Zhang, Yonghui Sun, Zheng-Guang Wu

    IEEE transactions on cybernetics
    |October 8, 2024
    PubMed
    概括

    本研究介绍了网络非线性跳跃系统的双层异步控制方案,解决数据传输问题. 这种新的方法通过Takagi-Sugeno模糊方法和半马尔科夫理论提高了稳定性,减少了保守主义和带宽限制.

    科学领域:

    • 控制系统工程 控制系统工程
    • 网络化系统 网络化系统
    • 非线性动力学是一种非线性动力学.

    背景情况:

    • 网络系统面临的挑战包括不完整的信息和有限的带宽.
    • 非线性跳跃系统需要强大的控制策略来保持稳定性.

    研究的目的:

    • 为网络非线性跳跃系统提出一个双层异步控制方案.
    • 解决数据传输限制,包括不完整的模式和过渡信息,非线性和带宽限制.

    主要方法:

    • 使用了塔卡吉-苏杰诺 (T-S) 模糊方法和半马尔科夫理论 (SMT).
    • 引入了一个隐藏的半马尔科夫过程,具有时间变化的发射概率和模式关系的间隔细分.
    • 实施了双边量子化策略,以管理有限的带宽.

    主要成果:

    • 开发了一个控制方案,通过充分利用过渡率信息来减少保守主义.
    • 为非线性跳跃系统的随机稳定性推导出新的充分条件.
    • 通过直流电机模拟来证明有效性和可行性.

    结论:

    • 拟议的双层异步控制方案有效地稳定了网络非线性跳跃系统.

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  • 该方法成功地处理不完整的信息和带宽限制.
  • 该方法为异步控制设计提供了一个不那么保守的替代方案.