搜索资源列表
shark
- 一个水下无人自主航行器(AUV)的MATLAB/simulink仿真程序,写得很详细,有附带的s函数和m文件供参考学习。看资源里水下无人航行器的仿真程序比较少,特上传来与大家分享。-An underwater autonomous Vehicle (AUV) in the MATLAB/simulink simulation program, written very detailed, with the s functions and m files for reference study.
MOTOROLAMPX4115
- 介绍了MOTOROLA气压传感器MPX4115,该传感器可以用于无人飞行器的高度测量。-MOTOROLA introduce a pressure sensor MPX4115, the sensor can be used in unmanned aerial vehicle height measurement.
attachments_2010_01_22
- code for Unmanned Air Vehicle. Describes the basic functioning of the project
MVT_v1_0
- 水下无人航行器(AUV)simulink仿真工具箱,安装后即可用里面给出的各种AUV模型进行仿真,是挪威科技大学的学生做的,很不错。-Unmanned underwater vehicle (AUV) simulink simulation toolbox, which can be used after installation of various AUV model given simulation, the Norwegian University of Technology, stu
SyarifulSyafiqShamsudinMFKM2007
- THE DEVELOPMENT OF AUTOPILOT SYSTEM FOR AN UNMANNED AERIAL VEHICLE (UAV) HELICOPTER MODEL
Design-of-an-Electric-Propulsion-System-for-a-Qua
- Design of an Electric Propulsion System for a Quadrotor Unmanned Aerial Vehicle
freescle
- 微缩性无人车智能车代码!用摄像头探路在黑白跑道上行走!-Smart Car of miniature unmanned vehicle code! Very good,
auvmodel
- 程序中给出了水下机器人的平面运动模型,对于从事水下机器人研究的同学很有帮助-it will give a underwater unmanned vehicle s plane model
An-Improved-A--Star-Algorithm
- (被EI收录,不错的文章)传统A*算法在栅格地图上进行路径规划时,求解得到的路径长度不是最短并且转折点较多。针对这些不足,提出了一种改进A*算法,将传统A*算法的可搜索邻域个数从离散的8个拓展为无限个,可以沿任意方向进行搜索。这样不仅求解出来的路径长度更短,并且大大降低了其转折点的个数。该算法被应用于自主研发的“智能先锋”号系列无人驾驶车辆上,实车试验以及它们在“中国智能车未来挑战赛”中的优异表现证明该方法能够在栅格地图中求解出一条更优的可行驶路径,可以显著提升无人驾驶车辆行驶的效率和平稳性。-
CarSim_Matlab联合仿真20131218得到的成功版test
- 基于carsim与matlab联合仿真的无人车辆路径规划与轨迹重规划(Path planning and trajectory re planning of unmanned vehicle based on CarSim and MATLAB joint simulation)
MPC
- 无人驾驶汽车模型预测控制的算例代码,非常实用。(The code of the model predictive control of the unmanned vehicle)
matlab.m
- 在智能化交通上如何做到区别噪声和汽车鸣笛声,为智能无人车的安全通畅行驶提供有力的保证。本程序通过滤波器的波形判断声波是否属于汽车鸣笛声。(In the intelligent traffic, how to make the noise and the sound of the car whistle can provide a powerful guarantee for the unobstructed driving of the intelligent unmanned vehicle.
Dynamic
- Moton planning for unmanned vehicle
第4章
- 用CARSIM搭建车辆模型,采用模型预测控制器实现轨迹跟踪控制,仿真了无人车对圆形轨迹的跟踪(Using CARSIM to build the vehicle model, using the model predictive controller to realize trajectory tracking control, and simulating the tracking of the circular trajectory by the unmanned vehicle)
MPC轨迹规划器
- 采用matlab仿真分析了加入规划层的MPC控制器对无人车辆的跟随(Using matlab simulation analysis of the MPC controller added to the planning layer to follow the unmanned vehicle)
基于运动学模型的无人驾驶车辆轨迹跟踪问题研究
- 无人驾驶车辆模型预测控制仿真程序,通过建立运动学模型,对跟踪控制进行了研究(Simulation control program for unmanned vehicle model predictive control. Through the establishment of a kinematic model, the tracking control was studied.)
robotmobile2
- 基于matlab的无人车机器人的避障算法研究,以及matlab的结构框架,仅供参考。(Matlab based research on obstacle avoidance algorithm for unmanned vehicle and Matlab's structural framework are for reference only.)
无人驾驶车辆模型预测控制原书程序代码
- 无人驾驶车辆模型预测控制 [龚建伟,姜岩,徐威 著] 2014年版(Unmanned vehicle model predictive control)
最新版本程序
- 使用人工势场法实现避障的无人车路径规划,且具有较多注释说明(Artificial potential field method is used to realize obstacle avoidance path planning of unmanned vehicle, which has many explanatory notes)
无人驾驶车辆模型预测控制matlab代码
- 《无人驾驶车辆模型预测控制》对应代码,添加注释,成功运行!实现了车辆无人驾驶控制的matlab仿真(The corresponding code of "prediction and control of unmanned vehicle model" is added with notes and successfully run! Matlab simulation of vehicle unmanned driving control is realized)