搜索结果: 1-8 共查到“机械工程 ARM”相关记录8条 . 查询时间(0.093 秒)
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Robot arm 'tastes' with engineered bacteria(图)
Robot arm engineered bacteria University of California
2019/10/23
A robotic gripping arm that uses engineered bacteria to "taste" for a specific chemical has been developed by engineers at the University of California, Davis, and Carnegie Mellon University. The grip...
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Artificial intelligence controls robotic arm to pack boxes and cut costs(图)
Artificial intelligence robotic pack boxes cut costs
2019/10/23
An NSF-funded team of computer scientists at Rutgers University used artificial intelligence to control a robotic arm, thereby providing a more efficient way to pack boxes that will save businesses ti...
Design, analysis, and simulation of a humanoid robotic arm applied to catching
robotic catching ball catching robotic arm
2015/1/12
There have been many endeavors to design humanoid robots that have human characteristics such as dexterity, autonomy and intelligence. Humanoid robots are intended to cooperate with humans and perform...
为满足弧焊电源数字化与多功能化发展的要求,设计了一种以ARM+CPLD作为控制核心的用于弧焊电源的数字化面板。该面板采用LM3S818 MCU为主控芯片,采用EPM240T100 CPLD为显示控制芯片。用MCU对参数输入设备进行程序控制,产生相应控制命令;利用CPLD丰富的I/O引脚,对面板输出设备进行控制,把MCU发送的命令转化为面板上数码管和相应LED的显示。实现了焊接参数输入和显示的数字化...
基于ARM和DSP的可重构数控系统
机床 数控系统 ARM
2009/3/5
针对柔性化制造的要求,构建了以ARM、DSP为基础的数控系统平台。该平台集成度高、稳定性强,能实现生产过程的高速度、高精度要求;同时巧妙利用SRAM解决了现场可编程门阵列(FPGA)动态重构中的重建时隙问题,实现了基于FOGA的可重构设计,提高了系统的柔性。在硬件基础上引入嵌入式实时操作系统RT-Linux,采用层次化软件设计,提高了数控系统运行的稳定性和任务调度的实时性。试验结果证明该方案是可行...
ARM处理器在焊接电源数字化控制系统中的应用
ARM处理器 PID控制 数字化控制
2009/1/4
基于ARM处理器的弧焊电源的数字化控制,采用LPC2131控制器,通过不同特性控制与时序控制,使IGBT逆变式弧焊电源具有多功能的用途,主要可以实现手工焊、直流TIG、脉冲TIG和MAG焊等焊接方法。LPC2131主要用于不同焊接方法的时序控制、焊接给定参数与反馈参数的采样、PID和模糊控制算法的运算以及PWM的输出与调制控制,从而实现多功能焊接电源的数字化控制。提出基于嵌入式系统,实现焊接电源人...
Motion Planning for a Robot Arm by Using Genetic Algorithm
robot motion planning genetic algorithm obstacle avoidance
2010/1/15
This paper proposes genetic algorithm (GA) to optimize the point-to-point trajectory planning for a 3-link (redundant) robot
arm. The objective function for the proposed GA is to minimizing traveling...
以CO2短路过渡弧焊过程为研究对象,开发了一套基于32位ARM微处理器的弧焊电参数采集分析系统。该系统主要由霍尔传感器、信号调理电路和基于ARM核的LPC2142单片机等硬件组成。系统软件包括单片机固件程序、USB驱动程序和用户应用程序。经验证,该系统具有良好的使用性能。