亚洲AV日韩AV无码污污网站_亚洲欧美国产精品久久久久久久_欧美日韩一区二区视频不卡_丰满无码人妻束缚无码区_久爱WWW成人网免费视频


首頁(yè) -> 登錄 -> 注冊(cè) -> 回復(fù)主題 -> 發(fā)表主題
光行天下 -> 文獻(xiàn),論文,課件及其它 -> 光纖陀螺輸入軸失準(zhǔn)角溫度補(bǔ)償研究 [點(diǎn)此返回論壇查看本帖完整版本] [打印本頁(yè)]

hanabiii 2011-10-19 22:41

光纖陀螺輸入軸失準(zhǔn)角溫度補(bǔ)償研究

摘要: 提高溫度特性是光纖陀螺儀工程化的一個(gè)難題, 溫度補(bǔ)償是解決該問(wèn)題的一種有效方法。光纖陀螺與溫度相關(guān)誤差項(xiàng)主要為零漂和標(biāo)度因數(shù), 輸入軸失準(zhǔn)角也是影響光纖陀螺應(yīng)用的一個(gè)重要誤差項(xiàng)。在大量試驗(yàn)的基礎(chǔ)上, 分析了光纖陀螺輸入軸失準(zhǔn)角誤差產(chǎn)生機(jī)理, 采用多項(xiàng)式擬合方法建立了輸入軸失準(zhǔn)角誤差全溫模型, 對(duì)多套光纖陀螺進(jìn)行了全溫補(bǔ)償。試驗(yàn)結(jié)果表明, 輸入軸失準(zhǔn)角補(bǔ)償前全溫變化在rad數(shù)量級(jí), 補(bǔ)償后全溫變化小于精度提高了近一個(gè)數(shù)量級(jí), 大大提高了光纖陀螺儀的全溫性能。 6I@j$edZ  
關(guān)鍵詞: ; 光纖陀螺儀; 輸入軸失準(zhǔn)角; 溫度補(bǔ)償 qXW\/NT"p<  
中圖分類號(hào): V241. 5 文獻(xiàn)標(biāo)識(shí)碼: A文章編號(hào): 1000- 8829( 2010) 10- 0006- 03 B{j><u xl  
Temperature Compensation Research on InputAxisMisalignment of FOG TSP%5v;Dh  
JI Sh i..tao1, QIN Yong..yuan1,LAN Yan2, L IU Zh i..rong2 11yXI[  
( 1.Schoo l o f Autom ation Contro,l Northw este rn Po lytechn icalUn iversity, X i! an 710072, <st1:country-region w:st="on">China; VjM3M<!g>M  
( 2.Institute No. 16 o f Ch ina Ae rospace Sc ience and Technology Corpo ration,Xi! an 710100, <st1:country-region w:st="on">China) V+ ("kz*  
Bxm,?=h  
Abstract: Improv ing thetemperature performance is a difficult prob lem in fiber..opt ic gyro(FOG ) engineering.Temperature compensation is an effectivemethod for so lv ing the prob lem. The errors of FOG involved w ith tem..perature are zero b ias and sca le factor.Input ax ism isa lignm ent is ano ther important errorw ith temperature. On the basis o fmany experiments, theme chanismis ana lyzed, the input ax ism isa lignmen t! s fu ll sca le temperature errormode l is established by using polynomial fitting method. The fu ll scale temperature compensat ions for some FOGs are carried out. The experim entresult show s that input ax ism isa lignmen t can be improved from a.. g;63$_<  
bout 2 10- 3 rad to less than 3 10- 4 rad.The prec ision can be improved about a quantitatively leve.l The fu ll..scale temperature performance o fFOG is improved. C!5A,|