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A design of a drug driver system for controlling an insulin pump and microcontroller hardware implementation using two-point calibration algorithm

机译:一种使用两点校准算法控制胰岛素泵和微控制器硬件实现的药物驱动器系统的设计

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The study covered a drug driver system that can be used for continuous glucose monitoring system intended to drive a pump that will administer insulin for the purpose of combating diabetes. The system begins with a microcontroller unit having an analog voltage input that is derived from a calibrated linearity curve relative to that of glucose concentration, the microcontroller algorithm processes the data and determines whether an output of insulin or glucagon is needed. The output of the microcontroller unit is a time variable pulse which is dependent on the glucose concentration reading. Separately, a full custom IC design is conducted for an actual drug driver circuit for the purpose of miniaturization to make the system viable for implantation. The hardware test for the microcontroller unit indicates that the algorithm can be used to properly read glucose concentrations and provide an output accordingly. However, there are delays within the microcontroller which affect the response of the output. For the full custom IC design of the drug driver circuit, it is observed that the parasitic capacitances and resistances affect the propagation delay and power dissipation of the circuit but can still be used in a drug driver system.
机译:该研究涵盖了一种药物驱动器系统,可用于连续葡萄糖监测系统,旨在驱动泵,该泵将施用胰岛素的糖尿病的目的。该系统开始于微控制器单元,所述微控制器单元具有相对于葡萄糖浓度的校准线性曲线导出的模拟电压输入,微控制器算法处理数据并确定是否需要胰岛素或胰高血糖素的输出。微控制器单元的输出是时间可变脉冲,其取决于葡萄糖浓度读数。另外,用于实际药物驱动器电路进行全定制IC设计,以便小型化,使系统可行的植入。微控制器单元的硬件测试表明该算法可用于适当地读取葡萄糖浓度并相应地提供输出。但是,微控制器内有延迟影响输出的响应。对于药物驱动器电路的全定制IC设计,观察到寄生电容和电阻影响电路的传播延迟和功耗,但仍可用于药物驱动系统。

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