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MEMS-based Phased Arrays for Army Applications

机译:基于MEMS的陆军应用程序的相控阵

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摘要

The Army Aviation and Missile Research, Development, and Engineering Center (AMRDEC) initiated a research and development project several years ago to develop Micro Electro-Mechanical Systems (MEMS)-based phased arrays to provide rapid beam steering for sensors, optical and Radio Frequency (RF) missile seekers, and RF communication links. In particular, the joint AMRDEC/Army Research Laboratory (ARL) project, which leverages low-cost phased array components developed under the Defense Advanced Research Projects Agency (DARPA) Low Cost Cruise Missile Defense (LCCMD) project, is developing RF switches, phase shifters, and passive phased sub-arrays to provide a fast scanning capability for pointing, acquisition, tracking, and data communication; and rugged, optical MEMS-based phased arrays to be employed in small volume, low-cost Laser Detection and Ranging (LADAR) seekers. The current status of the project is disclosed in this paper. Critical technical challenges, which include design and fabrication of the RF switches and phase shifters, design and fabrication of micro lens arrays, control of beam steering, scanning angular resolution and array losses, are discussed. Our approach to overcoming the technical barriers and achieving required performance is also discussed. Finally, the validity of a MEMS technology approach against competing low cost technologies is presented.
机译:陆军航空和导弹研究,开发和工程中心(AMRDEC)在几年前发起了一项研发项目,以开发微机电系统(MEMS),基于相控阵列,为传感器,光学和射频提供快速光束转向(rf)导弹寻求者和射频通信链接。特别是,利用AMRDEC / ARMAIN研究实验室(ARL)项目,利用低成本逐步的阵列组件在国防高级研究项目局(DARPA)低成本巡航导弹防御(LCCMD)项目下,正在开发RF开关,阶段移位器和被动相控的子阵列提供用于指向,获取,跟踪和数据通信的快速扫描能力;并坚固,基于光学MEMS的相位阵列,用于小体积,低成本激光检测和测距(LADAR)寻求者。本文披露了该项目的当前状态。批判技术挑战包括RF开关和相移器的设计和制造,微透镜阵列的设计和制造,光束转向的控制,扫描角度分辨率和阵列损耗。我们还讨论了克服技术障碍和实现所需性能的方法。最后,提出了MEMS技术方法对竞争低成本技术的有效性。

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