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Networked Rectenna Array for Smart Material Actuators

机译:用于智能材料执行器的联网Rectenna阵列

摘要

The concept of microwave-driven smart material actuators is envisioned as the best option to alleviate the complexity associated with hard-wired control circuitry. Networked rectenna patch array receives and converts microwave power into a DC power for an array of smart actuators. To use microwave power effectively, the concept of a power allocation and distribution (PAD) circuit is adopted for networking a rectenna/actuator patch array. The PAD circuit is imbedded into a single embodiment of rectenna and actuator array. The thin-film microcircuit embodiment of PAD circuit adds insignificant amount of rigidity to membrane flexibility. Preliminary design and fabrication of PAD circuitry that consists of a few nodal elements were made for laboratory testing. The networked actuators were tested to correlate the network coupling effect, power allocation and distribution, and response time. The features of preliminary design are 16-channel computer control of actuators by a PCI board and the compensator for a power failure or leakage of one or more rectennas.
机译:可以预见,微波驱动的智能材料执行器的概念是减轻与硬连线控制电路相关的复杂性的最佳选择。联网的整流天线贴片阵列接收微波功率并将其转换为一系列智能执行器的直流电。为了有效地利用微波功率,采用功率分配和分配(PAD)电路的概念来将整流天线/致动器贴片阵列联网。 PAD电路被嵌入到整流天线和致动器阵列的单个实施例中。 PAD电路的薄膜微电路实施例为膜的柔韧性增加了微不足道的刚性。 PAD电路的初步设计和制造包括一些节点元件,用于实验室测试。对联网的执行器进行了测试,以关联网络耦合效果,功率分配和分配以及响应时间。初步设计的功能是通过PCI板和补偿器对执行器进行16通道计算机控制,以防止一个或多个整流天线的电源故障或泄漏。

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