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Microfluidic systems for reconfigurable RF surfaces and systems

机译:用于可重构RF表面和系统的微流体系统

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Adaptive control of electromagnetic (EM) properties across the surface of a platform can enhance its operational capabilities and survivability. Microfluidic systems may be an enabling technology for such EM control. Communication links use portions of the surface and other EM sensors may provide information about the environment or gather signal intelligence (SIGINT). At the surface, light or radar signals are reflected or scattered and provide the primary means of detection by an adversary's sensor systems such as radar. An electronically reconfigurable surface (ERS) would adaptively control these EM processes. An ERS is based on the distributed and adaptive control of the RF (radio frequencies) surface properties. For an ERS system the RF control would be accomplished by embedding in the surface region microwave circuits containing devices with controllable impedance characteristics. A microfluidic system that uses colloidal particle control and local circulation could provide a means of implementing the distributed impedance control needed for ERS systems. This paper provides a systems level overview of the application of microfluidic devices and systems as an enabling technology for ERS systems. A feedback and control subsystem would provide control signals to adaptively alter microfluidic device impedance characteristics, which would be the basis of the RF control.
机译:跨平台表面的电磁(EM)属性的自适应控制可以增强其操作能力和生存能力。微流体系统可能是用于此类EM控制的使能技术。通信链路使用表面的某些部分,其他EM传感器可能会提供有关环境的信息或收集信号智能(SIGINT)。在地面上,光或雷达信号被反射或散射,并提供了敌方传感器系统(例如雷达)的主要检测手段。电子可重构表面(ERS)将自适应地控制这些EM过程。 ERS基于对RF(射频)表面特性的分布式和自适应控制。对于ERS系统,RF控制将通过在微波区域中嵌入包含具有可控阻抗特性的设备的微波电路来完成。使用胶体颗粒控制和局部循环的微流体系统可以提供一种实现ERS系统所需的分布式阻抗控制的方法。本文提供了微流控设备和系统作为ERS系统支持技术的应用的系统级概述。反馈和控制子系统将提供控制信号,以自适应地更改微流体设备的阻抗特性,这将成为RF控制的基础。

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