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基于嵌入式的空間光通信系統前饋補償系統設計
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Design of feedforward compensation system based on embedded space optical communication system
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    摘要:

    為滿(mǎn)足光通信系統對于目標數據的快速捕獲需求,縮小各級通信設備間的動(dòng)態(tài)跟蹤誤差,設計基于嵌入式技術(shù)的空間光通信系統的前饋補償系統。以并串轉換電路作為唯一的電能輸出裝置,在光通信信號發(fā)射模塊、波分復用器件、嵌入式光放大器三個(gè)通信設備元件的共同調節作用下,確定PWM功率放大器的實(shí)時(shí)執行能力,達到對前饋型角編碼器的調度與應用,實(shí)現空間光通信系統前饋補償結構的搭建。配置Linux嵌入內核的移植協(xié)議,多次創(chuàng )建空間光環(huán)境下的通信數據根文件,以此為存儲標準,計算補償調制的基礎傳信率,實(shí)現對前饋脈沖波的調制與處理,完成嵌入式通信系統的前饋補償原理研究。實(shí)驗結果表明,應用前饋補償系統后,在光通信參量等于5.0×1011T、7.0×1011T、9.0×1011T的情況下,目標數據的捕獲速率均超過(guò)7.0T/mm,滿(mǎn)足縮小通信設備間動(dòng)態(tài)跟蹤誤差的實(shí)際應用需求。

    Abstract:

    In order to meet the needs of the optical communication system for the rapid capture of target data and reduce the dynamic tracking error between all levels of communication equipment, a feedforward compensation system for the spatial optical communication system based on embedded technology is designed. With the parallel-to-serial conversion circuit as the only power output device, under the joint adjustment of the three communication equipment components of the optical communication signal transmission module, the wavelength division multiplexing device, and the embedded optical amplifier, the real-time execution capability of the PWM power amplifier is determined to achieve For the scheduling and application of feedforward angle encoders, the construction of feedforward compensation structure for space optical communication systems is realized. Configure the Linux embedded kernel transplantation protocol, create multiple communication data root files under the space light environment, use this as the storage standard, calculate the basic transmission rate of the compensation modulation, realize the modulation and processing of the feedforward pulse wave, and complete the embedding Research on the principle of feedforward compensation in communication systems. The experimental results show that after the feedforward compensation system is applied, when the optical communication parameters are equal to 5.0×1011T, 7.0×1011T, and 9.0×1011T, the target data capture rate exceeds 7.0T/mm, which satisfies the reduction of dynamic tracking between communication devices The actual application requirements of the error.

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劉曉興.基于嵌入式的空間光通信系統前饋補償系統設計計算機測量與控制[J].,2021,29(1):215-219.

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  • 收稿日期:2020-06-03
  • 最后修改日期:2020-07-07
  • 錄用日期:2020-07-07
  • 在線(xiàn)發(fā)布日期: 2021-01-22
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