







摘"要:為了提高配電自動化通信終端的通信可靠性和抗干擾性,設計了基于北斗衛星導航技術的配電自動化通信終端。具體設計配電自動化通信終端總體架構、通信終端載體和通信終端運行主程序,在北斗控制單元中編寫信息傳入速率控制程序,調控終端功率大小,實現信號傳入速率控制,采用射頻信號處理程序對射頻信號進行濾波和放大。測試結果表明:設計的配電自動化通信終端通信收發損失程度均在5以下,信噪比均大于10,說明該終端的通信可靠性較高、通信抗干擾性較強。
關鍵詞:北斗衛星導航技術;通信載體;通信程序;配電自動化通信終端;性能驗證
中圖分類號:TP222.87"""""文獻標識碼:A
Design"of"Distribution"Automation"Communication"Terminal"
Based"on"Beidou"Satellite"Navigation"Technology
XIANG"Jun1,ZHU"Jiao1,WU"Chunji2,FANG"Xueqin3,XING"Yizheng2
(1.Hainan"Power"Grid"Co.,Ltd.,"Haikou,Hainan"570000","China;
2.Information"and"Communication"Branch"of"Hainan"Power"Grid,"Haikou,Hainan"570000","China;
3.Hainan"Digital"Grid"Research"Institute,China"Southern"Power"Grid,"Haikou,Hainan"570000","China)
Abstract:In"order"to"improve"the"communication"reliability"and"antiinterference"of"distribution"automation"communication"terminal,"a"distribution"automation"communication"terminal"based"on"Beidou"satellite"navigation"technology"is"designed."The"overall"architecture,communication"terminal"carrier"and"the"main"program"of"the"communication"terminal"of"distribution"automation"communication"terminal""is"designed,"and"the"information"transmission"rate"control"program"is"written"innbsp;the"Beidou"control"unit"to"regulate"the"terminal"power"and"realize"the"signal"transmission"rate"control;"The"RF"signal"processing"program"is"used"to"filter"and"amplify"the"RF"signal."The"test"results"show"that"the"communication"loss"of"the"designed"distribution"automation"communication"terminal"is"less"than"5,"and"the"signaltonoise"ratio"is"greater"than"10,"indicating"that"the"terminal"has"high"communication"reliability"and"strong"communication"anti-interference.
Key"words:Beidou"satellite"navigation"technology;"communication"carrier;"communication"procedures;"distribution"automation"communication"terminal;"performance"verification
通信終端是配電實現自動化的基礎和核心。借助通信終端能夠將實時采集到的配電網運行數據傳輸到總站,給調度人員提供判斷依據。為了實現配電通信的有效性、可靠性,通信終端具有更高的設計要求,即提高通信的可靠性、抗干擾性等性能[1-2]。
目前,關于通信終端的設計有很多。王興濤、趙訓威、付海旋等人圍繞嵌入式"ARM"芯片"GD32F450構建系統架構。通過主控單元、通信模組、電源單元以及外圍接口單元組建通信終端硬件,并設計三層終端軟件以及軟件功能程序[3]。王云棣、王興濤、吳慶等人在其研究中以ARM9Linux嵌入式系統作為電力無線專網遠程通信終端的主控平臺;通過模組連通1.8"GHz專網基站及核心網,設計通信端總體結構;設計了該終端的硬件部分,包括AFIM核心控制器電路、電源模塊、通信模組電路、USIM卡模塊電路等;……