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FSO tracking and auto-alignment transceiver system

机译:FSO跟踪和自动对准收发器系统

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Free-space optics (FSO) technology utilizes a modulated light beam to transmit information through the atmosphere. Due to reduced size and cost, and higher data rates, FSO can be more effective than wireless communication. Although atmospheric conditions can affect FSO communication, a line-of-sight connection between FSO transceivers is a necessary condition to maintain continuous exchange of data, voice, and video information. To date, the primary concentration of mobile FSO research and development has been toward accurate alignment between two transceivers. This study introduces a fully automatic, advanced alignment system that will maintain a line of sight connection for any FSO transceiver system. A complete transceiver system includes a position-sensing detector (PSD) to receive the signal, a laser to transmit the signal, a gimbal to move the transceiver to maintain alignment, and a computer to coordinate the necessary movements during motion. The FSO system was tested for mobility by employing one gimbal as a mobile unit and establishing another as a base station. Tests were performed to establish that alignment between two transceivers could be maintained during a given period of experiments and to determine the maximum speeds tolerated by the system. Implementation of the transceiver system can be realized in many ways, including vehicle-to-base station communication or vehicle-to-vehicle communication. This study is especially promising in that it suggests such a system is able to provide high-speed data in many applications where current wireless technology may not be effective. This phenomenon, coupled with the ability to maintain an autonomously realigned connection, opens the possibility of endless applications for both military and civilian use.
机译:自由空间光学(FSO)技术利用调制光束通过大气传输信息。由于减小的尺寸和成本以及更高的数据速率,FSO比无线通信更有效。尽管大气条件会影响FSO通信,但FSO收发器之间的视线连接是维持数据,语音和视频信息连续交换的必要条件。迄今为止,移动FSO研究与开发的主要重点一直放在两个收发器之间的精确对准上。这项研究引入了一种全自动的高级对准系统,该系统将为任何FSO收发器系统保持视线连接。完整的收发器系统包括:位置感应检测器(PSD),用于接收信号;激光,用于发送信号;万向架,用于使收发器运动以保持对准;以及计算机,用于在运动过程中协调必要的运动。通过使用一个云台作为移动单元并建立另一个云台作为基站,对FSO系统的移动性进行了测试。执行测试以确定在给定的实验期间可以保持两个收发器之间的对齐,并确定系统所允许的最大速度。收发器系统的实现可以以多种方式实现,包括车辆到基站的通信或车辆到车辆的通信。这项研究特别有希望,因为它表明这种系统能够在当前无线技术可能无效的许多应用中提供高速数据。这种现象,加上维持自主重新对准的连接的能力,为军事和民用无尽应用提供了可能性。

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