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相关概念视频

Open and closed-loop control systems01:17

Open and closed-loop control systems

727
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...
727
Controller Configurations01:22

Controller Configurations

94
Controller configurations are crucial in a car's cruise control system because they manage speed over time to maintain a consistent pace regardless of road conditions, thereby meeting design goals. In traditional control systems, fixed-configuration design involves predetermined controller placement. System performance modifications are known as compensation.
Control-system compensation involves various configurations, most commonly series or cascade compensation, in which the controller...
94
PID Controller01:19

PID Controller

115
Proportional-Integral-Derivative (PID) controllers are widely used in various control systems to enhance stability and performance. In a thermostat, it adjusts heating or cooling based on the temperature difference between the actual and desired levels. They are often used in automotive speed systems, effectively managing sudden speed changes while maintaining a constant speed under varying conditions. On the other hand, PI controllers, commonly employed in voltage regulation, enhance stability...
115
Feedback control systems01:26

Feedback control systems

307
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...
307
PI Controller: Design01:24

PI Controller: Design

250
Proportional Integral (PI) controllers are a fundamental component in modern control systems, widely used to enhance performance and mitigate steady-state errors. They are particularly effective in applications such as automatic brightness adjustment on smartphones, where they excel at mitigating steady-state errors for step-function inputs. Unlike PD controllers, which require time-varying errors to function optimally, PI controllers leverage their integral component to address residual...
250
PD Controller: Design01:26

PD Controller: Design

222
In automotive engineering, car suspension systems often employ Proportional Derivative (PD) controllers to enhance performance. PD controllers are utilized to adjust the damping force in response to road conditions. A controller, acting as an amplifier with a constant gain, demonstrates proportional control, with output directly mirroring input.
Designing a continuous-data controller requires selecting and linking components like adders and integrators, which are fundamental in Proportional,...
222

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相关实验视频

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基于阻抗控制的医疗连续机器人的操作刚度控制器.

Jinyu Duan1, Kai Zhang1, Kun Qian2

  • 1Key Laboratory of Mechanism Theory and Equipment Design of Ministry of Education, School of Mechanical Engineering, Tianjin University, Tianjin 300072, China.

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概括

这项研究引入了连续操纵器的操作硬度控制器 (OSC),使得可调整的硬度更安全,更精确的微创手术 (MIS). 控制器在实验中表现出高精度和稳定性.

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科学领域:

  • 机器人技术 机器人技术 机器人技术
  • 手术技术 手术技术
  • 控制系统 控制系统

背景情况:

  • 连续操纵器在微创手术 (MIS) 中具有优势,因为它们能够导航复杂的解剖结构.
  • 可控制的操作度对于连续操纵器在不同手术阶段至关重要,平衡安全访问与精确操纵.

研究的目的:

  • 为肌驱动连续操纵器提出和验证一个操作刚度控制器 (OSC).
  • 为了使操纵器硬度的动态调整,而不改变其物理结构或材料.

主要方法:

  • 基于可变阻抗控制和拉格朗日动态建模的OSC的开发.
  • 修改沿操纵者的肌驱动力的变化,以改变刚性.
  • 使用利亚普诺夫函数进行稳定性分析.

主要成果:

  • 通过修改肌驱动力的作用,OSC成功调整了运行度.
  • 实验验证显示,恒定度的平均误差为7.82%,变化时间度的平均误差为3.09%.
  • 控制器表现出高精度,稳定性和强度.

结论:

  • 拟议的OSC有效控制连续操纵器的操作刚度.
  • 这项技术提高了连续操纵器在微创手术中的安全性和精度.
  • 控制器适应动态刚度要求的适应性是一个关键的进步.