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Description: 机器人的实时控制。VxWork,Windows系统在机器人控制方面的应用。链接来自 http://www.automationit.hut.fi-real-time control of robot. VxWork, Windows system in the robot control applications. Links from http://www.automationit.hut.fi
Platform: |
Size: 871825 |
Author: dolph |
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Description: 利用Atmel ATMega8 的定时器功能和PWM功能,制作频率发生器。
有LCD显示,并可实时调节ATMega8的各个相关的寄存器内容。
支持红外遥控器输入。
..\\频率发生器.prj ......主芯片项目文件
..\\频率发生器.c ......主芯片主程序
..\\频率发生器.asm ......主芯片汇编文件(自动生成)
..\\频率发生器.hex ......可供烧录的文件
..\\频率发生器_client.prj ......副芯片项目文件
..\\频率发生器_client.c ......副芯片主程序
..\\频率发生器_client.asm ......副芯片汇编文件
..\\频率发生器_client.hex ......可供烧录的文件
..\\Config.h ......硬件配置文件
..\\Input.c ......接受红外遥控器输入并在LCD中显示
..\\LCD_Interface.c ......LCD 1602 接口文件
..\\Menu.c ......在LCD中显示菜单和其它信息
..\\Menu.h ......菜单定义文件
..\\Readme.txt ......本说明文件-use the timer function and PWM function, the production of frequency generator. A LCD display, real-time adjustments can socket all the relevant registers contents. Support infrared remote control input. .. \\ Frequency generator. Prj ...... main chip project document .. \\ frequency generator. C ..... . Main Chip main program .. \\ frequency generator. asm2 ...... main chip compilation document (automatic generation) .. \\ frequency generator. hex ...... for copying documents .. \\ frequency generator _client.p rj ...... vice chip project document .. \\ frequency generator vice-_client.c ...... film main program .. \\ frequency generator _client.asm ...... Deputy Chip compilation .. \\ frequency _client.hex ...... rate generator for copying documents .. \\ Config.h. ..... hardware configuration fi
Platform: |
Size: 61499 |
Author: Aleyn.wu |
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Description: 机器人的实时控制。VxWork,Windows系统在机器人控制方面的应用。链接来自 http://www.automationit.hut.fi-real-time control of robot. VxWork, Windows system in the robot control applications. Links from http://www.automationit.hut.fi
Platform: |
Size: 871424 |
Author: dolph |
Hits:
Description: 利用Atmel ATMega8 的定时器功能和PWM功能,制作频率发生器。
有LCD显示,并可实时调节ATMega8的各个相关的寄存器内容。
支持红外遥控器输入。
..\频率发生器.prj ......主芯片项目文件
..\频率发生器.c ......主芯片主程序
..\频率发生器.asm ......主芯片汇编文件(自动生成)
..\频率发生器.hex ......可供烧录的文件
..\频率发生器_client.prj ......副芯片项目文件
..\频率发生器_client.c ......副芯片主程序
..\频率发生器_client.asm ......副芯片汇编文件
..\频率发生器_client.hex ......可供烧录的文件
..\Config.h ......硬件配置文件
..\Input.c ......接受红外遥控器输入并在LCD中显示
..\LCD_Interface.c ......LCD 1602 接口文件
..\Menu.c ......在LCD中显示菜单和其它信息
..\Menu.h ......菜单定义文件
..\Readme.txt ......本说明文件-use the timer function and PWM function, the production of frequency generator. A LCD display, real-time adjustments can socket all the relevant registers contents. Support infrared remote control input. .. \ Frequency generator. Prj ...... main chip project document .. \ frequency generator. C ..... . Main Chip main program .. \ frequency generator. asm2 ...... main chip compilation document (automatic generation) .. \ frequency generator. hex ...... for copying documents .. \ frequency generator _client.p rj ...... vice chip project document .. \ frequency generator vice-_client.c ...... film main program .. \ frequency generator _client.asm ...... Deputy Chip compilation .. \ frequency _client.hex ...... rate generator for copying documents .. \ Config.h. ..... hardware configuration fi
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Size: 61440 |
Author: Aleyn.wu |
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Description: 图像缓存是图像处理系统设计的重点和难点,包括SDRAM和FIFO的设计,本PDF是设计图像缓存设计的好资料-sdram and fifo design for real-time image processing system
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Size: 1146880 |
Author: 张荣奎 |
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Description: 实时火的实现 OpenGL高级技术 效率很高-a framework for real-time fire
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Size: 8588288 |
Author: 葳蕤 |
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Description: 最新基于无线网络的实时定位与跟踪技术白皮书。-White Paper. Wi-Fi Based Real-Time Location Tracking: Solutions and Technology.
Platform: |
Size: 44032 |
Author: CrazyCharlie |
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Description: Labview的一个实时FIFO例程,内含3个VI,对于学习实时部分较有帮助-A Labview Real-Time FIFO routine that includes three VI, part of the learning more real-time help
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Size: 88064 |
Author: 鹿欣 |
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Description: 该开发套件包含模拟AR鹦鹉无人机2.0实时Wi-Fi控制的实例。
仿真模块基于系统对车辆模型派生的识别。在Wi-Fi控制块能够发送指令得到无人驾驶飞机的实时状态。
-The development kit consists of blocks and examples for the simulation and real-time Wi-Fi control of the Parrot AR Drone 2.0.
The simulation blocks are based on models of the vehicle derived via system identification. The Wi-Fi control blocks are capable of sending commands to the drone and reading the states of the drone in real-time.
The examples provide a framework for the control and guidance of the vehicle. These examples enable velocity and position control, waypoint tracking, and mission execution for the AR.Drone in both simulation and Wi-Fi control.
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Size: 317440 |
Author: 林真天 |
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Description: The key benefits of using the smartphone accelerometer for human mobility analysis, with or without location determination
based upon GPS, Wi-Fi or GSM is that it is energy-efficient, provides real-time contextual information and has high availability. Using
measurements an accelerometer for human mobility analysis presents its own challenges as we all carry our smartphones
differently and the measurements are body placement dependent. Also it often relies on an on-demand remote data exchange
for analysis and processing which is less energy-efficient, has higher network costs and is not real-time. We present a novel
accelerometer framework based upon a probabilistic algorithm that neutralizes the effect of different smartphone on-body placements
and orientations to allow human movements to be more accurately and energy-efficiently identified.-The key benefits of using the smartphone accelerometer for human mobility analysis, with or without location determination
based upon GPS, Wi-Fi or GSM is that it is energy-efficient, provides real-time contextual information and has high availability. Using
measurements an accelerometer for human mobility analysis presents its own challenges as we all carry our smartphones
differently and the measurements are body placement dependent. Also it often relies on an on-demand remote data exchange
for analysis and processing which is less energy-efficient, has higher network costs and is not real-time. We present a novel
accelerometer framework based upon a probabilistic algorithm that neutralizes the effect of different smartphone on-body placements
and orientations to allow human movements to be more accurately and energy-efficiently identified.
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Size: 808960 |
Author: salomi |
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Description: The e-Health Sensor Shield allows Arduino and Raspberry Pi users to perform biometric and medical applications where body monitoring is needed by using 9 different sensors. This information can be used to monitor in real time the state of a patient or to get sensitive data in order to be subsequently analyzed for medical diagnosis. Biometric information gathered can be wirelessly sent using any of the 6 connectivity options available: Wi-Fi, 3G, GPRS, Bluetooth, 802.15.4 and ZigBee depending on the application.
This board is compatible with Arduino, Raspberry Pi and Intel Galileo boards.
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Size: 821248 |
Author: vasim |
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Description: – The web application allows users to monitor power consumption, register Wi-Fi controllable
devices and remotely control devices over Wi-Fi using a user interface.
– This web application consists of a RESTful API developed in Node.js using the Express Framework for database interaction, a web server for serving files, and employs the Web- Socket protocol for full-duplex real-time data streaming with minimal overhead.
– The Node.js web application running on the Intel Edison polls an SQLite database contain- ing power data with a single thread and pushes real-time data to all connected web clients using the WebSocket protocol.
– The web application uses Mustache.js as a client-side templating engine, uses client-side form validation, and employs AJAX to reduce CPU load on the Intel Edison and minimize network tra c.(The web application allows users to monitor power consumption, register Wi-Fi controllable
devices and remotely control devices over Wi-Fi using a user interface.
This web application consists of a RESTful API developed in Node.js using the Express Framework for database interaction, a web server for serving files, and employs the Web- Socket protocol for full-duplex real-time data streaming with minimal overhead.
The Node.js web application running on the Intel Edison polls an SQLite database contain- ing power data with a single thread and pushes real-time data to all connected web clients using the WebSocket protocol.
The web application uses Mustache.js as a client-side templating engine, uses client-side form validation, and employs AJAX to reduce CPU load on the Intel Edison and minimize network tra c.)
Platform: |
Size: 10185728 |
Author: 哈哈拉拉
|
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