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基于全光捕獲法的機載激光通信跟蹤控制系統設計
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92941部隊45分隊

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TN919

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Design of airborne laser communication tracking control system based on all-optical acquisition method
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    摘要:

    為了保證機載激光通信的質(zhì)量和穩定性,基于全光捕獲方法優(yōu)化設計機載激光通信跟蹤控制系統。加設激光器、激光告警器和運動(dòng)轉臺設備,為全光捕獲方法的運行提供硬件支持。改裝目標跟蹤探測器、跟蹤控制器、AD數據轉換器和電機驅動(dòng)器,通過(guò)系統供電電路的連接實(shí)現硬件系統的優(yōu)化。根據機載激光通信原理,從發(fā)送模塊、激光通信接收模塊等方面,構建機載激光通信模型。利用全光捕獲法生成機載激光通信鏈路,根據機載激光通信跟蹤目標相對信息的計算結果,確定通信光斑中心的位置,實(shí)現系統機載激光通信的跟蹤和控制功能。通過(guò)系統測試實(shí)驗得出結論:綜合室內和外場(chǎng)兩個(gè)應用環(huán)境,機載激光通信跟蹤控制系統的平均跟蹤偏移量為0.875m,通信誤碼率和丟包率分別為0.275%和0.384%,均高于預設值。

    Abstract:

    In order to ensure the quality and stability of airborne laser communication, an airborne laser communication tracking control system is optimally designed based on the all-optical capture method. Add lasers, laser alarms and motion turntable equipment to provide hardware support for the operation of the all-optical capture method. Modify the target tracking detector, tracking controller, AD data converter and motor driver, and realize the optimization of the hardware system through the connection of the system power supply circuit. According to the principle of airborne laser communication, the airborne laser communication model is constructed from the aspects of sending module, laser communication receiving module and so on. The all-optical capture method is used to generate the airborne laser communication link. According to the calculation result of the relative information of the tracking target of the airborne laser communication, the position of the center of the communication spot is determined, and the tracking and control functions of the airborne laser communication of the system are realized. Through the system test experiment, it is concluded that the average tracking offset of the airborne laser communication tracking control system is 0.875m, and the communication bit error rate and packet loss rate are 0.275% and 0.384%, respectively. higher than the preset value.

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姜鋒.基于全光捕獲法的機載激光通信跟蹤控制系統設計計算機測量與控制[J].,2022,30(9):93-98.

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歷史
  • 收稿日期:2022-05-06
  • 最后修改日期:2022-06-06
  • 錄用日期:2022-06-06
  • 在線(xiàn)發(fā)布日期: 2022-09-16
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