便携式两自由度直升机及其数字孪生
Aero 2 and QLabs Virtual Aero 2
该实验系统可以用来重构多种航空器控制实验,如单自由度姿态控制,2自由度直升机控制以及半四旋翼控制系统。该设备可用于建立一个先进的机电一体化控制教学实验室,让学生参与各种控制算法设计和创新项目,并在高质量、高精密的平台上验证所要研究的内容。

特点
- 高度集成一体化的系统
- 高效的无芯直流电机
- 高分辨率的光学编码器
- 通过数字转速表测量俯仰、偏航轴的角度以及直流电机的转速
- 内置电压放大器和电流传感器
- 集成数据采集设备(DAQ)
- 易于连接的电缆和连接器
- 开放式控制器设计,用户可根据需要设计控制器
- 完全兼容Matlab®/Simulink®
- 提供完整的系统模型和参数
- 提供ABET标准的数字媒体课件
实验课件
硬件集成 | 2 自由度直升机 |
单螺旋桨速度控制 | - 建模 |
单自由度姿态角控制 | - 线性状态空间 |
- PID 控制器设计 | - 状态反馈控制 |
- IMU介绍 | - 动态耦合 |
- 传递函数建模和模型验证 | 半四旋翼系统 |
- 系统识别 | - 建模 |
- 增益调节 | - 偏航控制 |
- 卡尔曼滤波 |
便携式两自由度直升机数字孪生 QLabs Virtual Aero 2
QLabs Virtual Aero 2是Aero 2经典Quanser 双旋翼控制系统的一个完全仪器化、动态精确的虚拟孪生。它的操作方式与物理硬件相同,完全兼容MATLAB/Simulink,可以使用MATLAB/Simulink和其它开发环境进行虚拟旋翼的测量和控制,数据实时交互,可在MATLAB/Simulink中实时更改数据,观察虚拟旋翼的动态变化。使用者在传统实验的基础上开展更多的创新实验,将可信、真实的基于模型的实验室体验带入远程和在线航空航天与控制系统课程中。
QLabs Virtual Aero 2提供12个月的多座位订阅。该平台与物理Quanser AERO 2课程兼容,该课程涵盖建模、系统识别、姿态和速度控制、PID控制、增益调节、状态反馈控制、耦合动力学和卡尔曼滤波等概念。
课程
- 硬件交互
- 单螺旋桨速度控制
- 极点配置状态反馈平衡控制
- 1自由度姿态控制配置
PID控制
IMU简介
使用传递函数进行建模和模型验证
系统标识
增益调节
- 2自由度直升机配置
建模
线性状态空间
状态反馈控制
耦合动力学
- 半四转子配置
建模
偏航控制
卡尔曼滤波器
规格
- 操作系统:Microsoft Windows 10或更高版本
- 支持软件:MATLAB和Simulink R2021a或更高版本、python 3
- 最低系统:视频卡:Intel HD 520或等效DX11 GPU
处理器:Core i5-6300U系列或同等产品
内存:8 GB RAM
- 建议系统:视频卡:Intel UHD 620或同等GPU
处理器:Core i7-8665U系列或同等产品
内存:16 GB RAM
- 至少满足300人同时在线使用
近期部分TOP文章
(便携式两自由度直升机)
2025年
期刊名称 | 论文名称 | 作者 |
Aerospace Science and Technology | Disturbance-rejection guaranteed MPC design for MIMO systems with application to a 2-DOF helicopter | Jingyu Zhao, Shaojie Liu, Wenchao Xue, Yanjun Ding, Donghai Li |
2024年
期刊名称 | 论文名称 | 作者 |
Automatica | Event-triggered adaptive neural fault-tolerant control for a 2-DOF helicopter system with prescribed performance | Zhijia Zhao, Jian Zhang, Zhijie Liu, Han-Xiong Li, C.L. Philip Chen |
IEEE Transactions on Neural Networks and Learning Systems | Neural-Network-Based Adaptive Fixed-time Control for a 2-DOF Helicopter System with Input Quantization and Output Constraints | Zhijia Zhao, Jiale Wu, Chaoxu Mu, Yu Liu, Keum-Shik Hong |
IEEE Transactions on Automation Science and Engineering | Reinforcement Learning Control for a 2-DOF Helicopter With State Constraints: Theory and Experiments | Zhijia Zhao, Weitian He, Chaoxu Mu, Tao Zou, Keum-Shik Hong, Han-Xiong Li |
Science China Information Sciences | Adaptive neural network control of a 2-DOF helicopter system considering input constraints and global prescribed performance | Zhijia Zhao, Jiale Wu, Zhijie Liu, Wei He & C. L. Philip Chen |
2023年
期刊名称 | 论文名称 | 作者 |
Automatica | Adaptive quantized fault-tolerant control of a 2-DOF helicopter system with actuator fault and unknown dead zone | Z. Zhao, J. Zhang, Z. Liu, W. He, K. Hong |
ISA Transactions | A CONTROLLER DESIGN METHOD FOR HIGH-ORDER UNSTABLE LINEAR TIME-INVARIANT SYSTEMS | G. Shi, Z. Gao, Y. Chen, D. Li, Y. Ding |
IEEE Transactions on Systems | Adaptive Broad Learning Neural Network for Fault-Tolerant Control of 2-DOF Helicopter Systems | ZhijiaZhao,Tao Zou,Tong Zhang |
IEEE Transactions on Neural Networks and Learning Systems | Adaptive Neural Network Control of an Uncertain 2-DOF Helicopter With Unknown Backlash-like Hysteresis and Output Constraints | Zhijia Zhao, Jian Zhang, Zhijie Liu*, Chaoxu Mu, Keum-Shik Hong |
IEEE Transactions on Aerospace and Electronic Systems | Adaptive constrained control for two-degree-of-freedom helicopter system with actuator faults | Zhijia Zhao,Tao Zou,Haihong Yang,Ge Ma, Zhifu Li,Shuangyin Liu |
IEEE Transactions on Industrial Electronics | Deterministic Learning from Adaptive Neural Network Control for a 2-DOF Helicopter System With Unknown Backlash and Model Uncertainty | Zhijia Zhao, Weitian He, Fukai Zhang*, Cong Wang, Keum-Shik Hong |
IEEE/CAA Journal of Automatica Sinica | Neural-network-based adaptive finite-time control for a two-degree-of-freedom helicopter system with an event-triggering mechanism | Zhijia Zhao, Jian Zhang, Shouyan Chen, Wei He, Keum-Shik Hong |
2022年
期刊名称 | 论文名称 | 作者 |
IEEE Transactions on Industrial Electronics | Performance-Boosting Attitude Control for 2-DOF Helicopter Applications via Surface Stabilization Approach | IEEE Journals & Magazine | IEEE Xplore | Seok-Kyoon Kim |
IEEE Transactions on Industrial Informatics | Order Reduction Approach to Velocity Sensorless Performance Recovery PD-type Attitude Stabilizer for 2-DOF Helicopter Applications | S. K. Kim, K. S.. Kim, C.. K. Ahn |
IEEE Transactions on Neural Networks and Learning Systems | Adaptive Neural Network Control of an Uncertain 2-DOF Helicopter With Unknown Backlash-Like Hysteresis and Output Constraints | Z. Zhao, J. Zhang, Z. Liu, C. Mu, K. Hong |
ISA Transactions | A controller design method for high-order unstable linear time-invariant systems | G. Shi, Z. Gao, Y. Chen, D. Li, Y. Ding |
2021年
期刊名称 | 论文名称 | 作者 |
IEEE Transactions on Industrial Electronics | Adaptive Attitude Control of a Rigid Body with Input and Output Quantization | Siri Marte Schlanbusch; Jing Zhou; Rune Schlanbusch |
Performance-Boosting Attitude Control for 2-DOF Helicopter Applications via Surface Stabilization Approach | S. K. Kim, C. K. Ahn | |
International Journal of Robust and Nonlinear Control | An alternative to proportional-integral and proportional-integral-derivative regulators: Intelligent proportional-derivative regulators | M. Fliess; C. Join |






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