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基于并行干擾抵消的5G通信信道傳輸控制系統設計
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榆林學(xué)院 信息工程學(xué)院

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[1]國家自然科學(xué)基金(51864046); [2]榆林市科技局(CXY-2020-007-04); [3]榆林市高新區科技創(chuàng )新局(CXY-2020-03)。


Design of 5G Communication channel Transmission control System based on parallel interference cancellation
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    摘要:

    為解決5G通信信號的連接超時(shí)問(wèn)題,使其在單幀、多幀、連續幀情況下,均能呈現出較為流暢的傳輸狀態(tài),設計基于并行干擾抵消的5G通信信道傳輸控制系統。聯(lián)合主電源模塊與通信信號采集模塊,并將輸出控制結構、數據處理結構接入電源平臺的既定控制節點(diǎn)之中,完成5G通信信道傳輸控制系統的功能方案設計。在此基礎上,分析5G通信信道內的信號傳輸環(huán)境,通過(guò)設置并行干擾抵消檢測器的方式,得到殘余多址信息的表達結果,完成基于并行干擾抵消的5G通信信道配置。根據干擾方差計算表達式,確定5G通信信號的傳輸誤碼率水平,實(shí)現對系統控制指令的分析與研究,結合相關(guān)硬件設備結構,完成基于并行干擾抵消的5G通信信道傳輸控制系統設計。實(shí)驗結果顯示,與動(dòng)態(tài)無(wú)線(xiàn)控制系統相比,在并行干擾抵消算法作用下,5G通信信號在單幀、多幀、連續幀情況下的連接時(shí)長(cháng)均能得到較好控制,這對于信號參量的流暢傳輸能夠起到一定的促進(jìn)性影響作用。

    Abstract:

    In order to solve the connection timeout problem of 5G communication signal and enable it to present a relatively smooth transmission state in the case of single frame, multiple frame and continuous frame, a 5G communication channel transmission control system based on parallel interference cancellation is designed. The main power module and communication signal acquisition module are combined, and the output control structure and data processing structure are connected to the established control nodes of the power platform to complete the functional scheme design of the 5G communication channel transmission control system. On this basis, the signal transmission environment in the 5G communication channel is analyzed. By setting the parallel interference cancellation detector, the expression result of residual multiple access information is obtained, and the 5G communication channel configuration based on the parallel interference cancellation is completed. According to the interference variance calculation expression, determine the transmission error rate level of 5G communication signal, realize the analysis and research of system control instructions, combined with the structure of related hardware equipment, complete the design of 5G communication channel transmission control system based on parallel interference cancellation. The experimental results show that compared with the dynamic wireless control system, under the action of parallel interference cancellation algorithm, the connection duration of 5G communication signal can be better controlled in the case of single frame, multi-frame and continuous frame, which can play a certain promoting effect on the smooth transmission of signal parameters.

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李瑞華,馮治東.基于并行干擾抵消的5G通信信道傳輸控制系統設計計算機測量與控制[J].,2022,30(7):160-165.

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  • 收稿日期:2022-01-28
  • 最后修改日期:2022-03-07
  • 錄用日期:2022-03-07
  • 在線(xiàn)發(fā)布日期: 2022-07-19
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