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Tuning-free controller to accurately regulate flow rates in a microfluidic network

机译:免调节控制器,可精确调节微流体网络中的流速

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We describe a control algorithm that can improve accuracy and stability of flow regulation in a microfluidic network that uses a conventional pressure pump system. The algorithm enables simultaneous and independent control of fluid flows in multiple micro-channels of a microfluidic network, but does not require any model parameters or tuning process. We investigate robustness and optimality of the proposed control algorithm and those are verified by simulations and experiments. In addition, the control algorithm is compared with a conventional PID controller to show that the proposed control algorithm resolves critical problems induced by the PID control. The capability of the control algorithm can be used not only in high-precision flow regulation in the presence of disturbance, but in some useful functions for lab-on-a-chip devices such as regulation of volumetric flow rate, interface position control of two laminar flows, valveless flow switching, droplet generation and particle manipulation. We demonstrate those functions and also suggest further potential biological applications which can be accomplished by the proposed control framework.
机译:我们描述了一种控制算法,可以提高使用常规压力泵系统的微流体网络中流量调节的准确性和稳定性。该算法能够同时独立控制微流体网络的多个微通道中的流体流动,但不需要任何模型参数或调整过程。我们研究了所提出的控制算法的鲁棒性和最优性,并通过仿真和实验对其进行了验证。此外,将该控制算法与常规PID控制器进行了比较,结果表明,该控制算法解决了PID控制引起的关键问题。该控制算法的功能不仅可以用于存在干扰的高精度流量调节中,而且还可以用于片上实验室设备的一些有用功能,例如体积流量的调节,两个接口位置的控制层流,无阀流切换,液滴产生和颗粒处理。我们演示了这些功能,并建议了可以通过建议的控制框架完成的其他潜在的生物学应用。

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