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Distributed control of multiscale microscopic chemical sensor networks

机译:多尺度微观化学传感器网络的分布式控制

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Micromachines and nanoscale devices can act together for high-resolution monitoring and action on multiple size scales within physical materials and biological organisms. Such multiscale systems require robust distributed controls responsive to heterogeneous and poorly characterized microenvironments. To develop such controls, this paper extends the partially observable Markov decision process formalism to machines operating asynchronously at multiple scales and with delays. We show how an approximation to this formalism readily provides aggregate performance measures needed for designing distributed controls. This approach identifies the aggregate behavior as arising from differential-delay equations approximating the system’s dynamics. We illustrate this approach to distributed controls for chemical sensor networks consisting of micro- and nanoscale devices in the context of high-resolution biomedical diagnostics and treatment through localized drug delivery.
机译:微型机器和纳米级设备可以共同作用,以进行高分辨率监视并在物理材料和生物有机体内的多个尺寸尺度上进行操作。这样的多尺度系统需要强大的分布式控件,以响应异构且特性不佳的微环境。为了开发这样的控件,本文将部分可观察到的马尔可夫决策过程形式化扩展到了在多个规模且有延迟的异步操作的机器上。我们展示了对这种形式主义的近似如何轻松提供设计分布式控件所需的总体性能度量。这种方法可以识别出由近似于系统动力学的微分延迟方程引起的总体行为。我们通过高分辨率的生物医学诊断和通过局部药物输送进行治疗,说明了这种对由微米和纳米级设备组成的化学传感器网络进行分布式控制的方法。

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