BeagleBone Black用于X8-VB四轴飞行器姿态控制

Y. Barbosa, Alexandre Brito, L. Palma, P. Gil, R. Antunes
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引用次数: 2

摘要

如今,人们生活在物联网(IoT)时代,使用小型微控制器或微处理器通过互联网读取传感器并与执行器交互。有很多可能的方法,但像Arduino, Raspberry pi, BeagleBone Black(和其他)这样的板,可以真正简化控制器,传感器和执行器之间的交互,因此在处理速度,并行处理,可扩展性和多功能性方面,了解其优缺点非常重要。本文将重点关注BeagleBone Black,这是前面提到的微控制器/微处理器中不太受欢迎的一种,因此,它的web支持和更新文档较少。为了了解BeagleBone Black的规格优势,即ARM Cortex处理器及其可编程实时单元(PRU),将对其架构进行解释。实现了X8-VB四轴飞行器的姿态控制器,并与Arduino Due版本进行了比较,以验证从Arduino Due到BeagleBone Black的过渡的整体性能改进。
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BeagleBone Black for X8-VB Quadcopter Attitude Control
Nowadays, people are living in the era of the Internet of Things (IoT), where small microcontrollers or microprocessors are used to read sensors and interact with actuators through the internet. There are a lot of possible approaches, but boards like Arduino, Raspberry pi, BeagleBone Black (and others), can really simplify the interaction between the controllers, sensors and the actuators, so it is important to understand its advantages and disadvantages when it comes to processing speed, parallel processing, expansibility and versatility. This paper will be focused on the BeagleBone Black, the less popular of the microcontrollers/microprocessors mentioned before and therefore, the one with less web support and updated documentation. Its architecture will be explained in order to understand the advantages of the specifications of the BeagleBone Black, namely the ARM Cortex processor and its Programmable Realtime Unit (PRU). The Attitude Controller for the X8-VB Quadcopter is implemented and compared with its Arduino Due version to validate the overall performance improvement of this transition from the Arduino Due to the BeagleBone Black.
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