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Development of Low-Cost Microcontroller-Based Interface for Data Acquisition and Control of Microbioreactor Operation

机译:基于低成本微控制器的接口的开发,用于数据采集和微反应器操作的控制

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This article presents the development of a low-cost microcontroller-based interface for a microbioreactor operation. An Arduino MEGA 2560 board with 54 digital input/outputs, including 15 pulse-width-modulation outputs, has been chosen to perform the acquisition and control of the microbioreactor. The microbioreactor (volume = 800 μL) was made of poly(dimethylsiloxane) and poly(methylmethacrylate) polymers. The reactor was built to be equipped with sensors and actuators for the control of reactor temperature and the mixing speed. The article discusses the circuit of the microcontroller-based platform, describes the signal conditioning steps, and evaluates the capacity of the proposed low-cost microcontroller-based interface in terms of control accuracy and system responses. It is demonstrated that the proposed microcontroller-based platform is able to operate parallel microbioreactor operation with satisfactory performances. Control accuracy at a deviation less than 5% of the set-point values and responses in the range of few seconds have been recorded.
机译:本文介绍了用于微生物反应器操作的低成本基于微控制器的接口的开发。已选择具有54个数字输入/输出(包括15个脉宽调制输出)的Arduino MEGA 2560开发板来执行微生物反应器的采集和控制。微生物反应器(体积= 800μL)由聚(二甲基硅氧烷)和聚(甲基丙烯酸甲酯)聚合物制成。建造反应器时要配备传感器和执行器,以控制反应器温度和混合速度。本文讨论了基于微控制器的平台的电路,描述了信号调节步骤,并根据控制精度和系统响应评估了所提出的低成本基于微控制器的接口的容量。事实证明,所提出的基于微控制器的平台能够以令人满意的性能运行并行的微生物反应器操作。记录了偏差小于设定值5%的控制精度,并记录了几秒钟的响应。

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