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scanning mirror中文是什么意思

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  • Modal analysis and dynamic deformation of scanning mirror
    掃描鏡動(dòng)態(tài)面形變化和模態(tài)分析
  • High - speed scanning mirror is adopted to ensure high speed , great precision
    采用高速掃描振鏡,速度快精度高
  • The scanning mirror system is execution component to compensates error brought by image movement . it is main component of aerial camera
    本文所研究的掃描反射鏡系統(tǒng)是斜視航空相機(jī)實(shí)現(xiàn)像移補(bǔ)償?shù)膱?zhí)行元件,它是航空相機(jī)的重要組成部分。
  • Both results show that the inertial coupling of the platform to infrared camera scanning mirror , to evaluate mirror motion , is negligible and so the mirror can perform scans of the earth at the specified angular rate
    兩方面的仿真分析表明:星體姿態(tài)運(yùn)動(dòng)干擾力矩對(duì)紅外相機(jī)掃描鏡轉(zhuǎn)動(dòng)影響很小,紅外相機(jī)掃描鏡能夠按設(shè)計(jì)轉(zhuǎn)速正常運(yùn)行。
  • This paper takes hj - 1b satellite and onboard infrared camera scanning mirror as research objects . the influences on respective motion performance caused by the dynamic interactions between them are evaluated . the emphasis is put on the influence of satellite platform ' s attitude motion upon infrared camera scanning mirror ' s continuous scanning motion
    本文以hj - 1b衛(wèi)星和其上的紅外相機(jī)掃描鏡為研究對(duì)象,分析兩者之間的動(dòng)力學(xué)耦合對(duì)各自運(yùn)動(dòng)特性的影響情況,并著重分析了衛(wèi)星平臺(tái)姿態(tài)振動(dòng)對(duì)紅外相機(jī)掃描機(jī)構(gòu)轉(zhuǎn)動(dòng)的影響。
  • The electrical cut scanning mirror shows : this bilinear behavior results from different cracking ways under high and low strain amplitudes , that is , elastic cracking and brittle cracking respectively . cyclic hysteresis energy is an important fatigue parameter . the total cyclic hysteresis energy of gh4145 / sq increases gradually as strain amplitude goes from 1 % to 0 . 5 % , but it decreases when strain amplitude is lower than 0 . 5 %
    在高溫低周疲勞下, gh4145 / sq合金的循環(huán)滯?能具有如下特征:在1 0 . 5應(yīng)變幅范圍內(nèi),循環(huán)總滯?能是一個(gè)逐漸增大的過(guò)程,而當(dāng)應(yīng)變幅小于0 . 5時(shí),總滯?能隨應(yīng)變幅減小而趨于減小;半壽命處的循環(huán)滯迥能和總滯?能與壽命之間的關(guān)系曲線表現(xiàn)出雙線性特征,轉(zhuǎn)折點(diǎn)對(duì)應(yīng)0 . 5應(yīng)變幅。
  • It analyses the causes to bright image movement , studies principle to compensate image movement , conforms project to compensate image movement , and designs framework to compensate image movement in the article ; to analyze and design configuration of the scanning mirror , to select matters of mirror and its support structures on the principle of consistent line expansion coefficient ; to ascertain type of moment electromotor by most rotating angle speed and most rotating moment which are required by loads in the period to take pictures , as well as by figuration size of electromotor ; to design retarder according as the electromotor parameters ; to design and optimize lightweighted mirror shapes , because the mirror is key part ; to design flexure support structure , to analyze static and dynamic characteristics of the support structure by name of patran program for validating desig n rationality ; to study function of the scanning mirror electric control system ; to test precision of the system , the results indicate the rationality of design of the scanning mirror system
    本文通過(guò)分析像移產(chǎn)生原因、研究像移補(bǔ)償原理,確定像移補(bǔ)償方案,并根據(jù)像移補(bǔ)償原理設(shè)計(jì)補(bǔ)償機(jī)構(gòu);分析與設(shè)計(jì)掃描反射鏡系統(tǒng)結(jié)構(gòu),根據(jù)材料線膨脹系數(shù)一致原則,選擇反射鏡及其背部支撐的材料;由掃描反射鏡在擺掃周期內(nèi)的最大擺掃角速度確定力矩電機(jī)的額定轉(zhuǎn)速,根據(jù)負(fù)載力矩確定電機(jī)的額定轉(zhuǎn)距,綜合電機(jī)外型尺寸等因素,確定執(zhí)行元件? ?電機(jī)的型號(hào);根據(jù)所選電機(jī)的參數(shù)指標(biāo),設(shè)計(jì)1 : 6速比的減速器;利用patran軟件對(duì)掃描反射鏡系統(tǒng)中的關(guān)鍵件? ?反射鏡進(jìn)行輕量化設(shè)計(jì)與優(yōu)化;設(shè)計(jì)反射鏡柔性支撐結(jié)構(gòu),并通過(guò)軟件分析支撐結(jié)構(gòu)的力學(xué)特性,驗(yàn)證反射鏡柔性支撐結(jié)構(gòu)設(shè)計(jì)的合理性;從原理上研究掃描反射鏡控制系統(tǒng)功能;進(jìn)行系統(tǒng)精度測(cè)試,測(cè)試結(jié)果表明掃描反射鏡系統(tǒng)設(shè)計(jì)的合理性。
  • In order to save time and reduce computational complexity in geometric calibration , a new idea is introduced , a new method on basis of it is presented . the image distortions are decomposed into nominal distortions , caused by nominal scan mirror and spacecraft motion , and seven perturbations , caused by deviations from the nominal motion . the paper analyzes each perturbation , build up a new equation to solve line of sight
    為了快速地進(jìn)行幾何校正,引進(jìn)了一種新的思路,并加以改進(jìn),將圖像上的扭曲分解為標(biāo)稱掃描鏡和衛(wèi)星運(yùn)動(dòng)引起的和七個(gè)偏離標(biāo)稱運(yùn)動(dòng)的微擾量引起的兩個(gè)部分,引進(jìn)了一種用偏導(dǎo)求視線的簡(jiǎn)便方法,詳細(xì)分析了各個(gè)微擾量造成的影響,建立了新的視線求解方程。
  • The coordinate systems and time systems are described in detail at first , then the paper presents the whole algorithm containing line of sight generation and projection attitude data combination scan mirror calibration , find corresponding grid cell , resample . at the same time , scan gaps and detector delays are analyzed in detail
    論文首先對(duì)校正過(guò)程中用到的時(shí)間系統(tǒng)和坐標(biāo)系統(tǒng)作了介紹,然后給出了完整的校正算法,包括視線產(chǎn)生和投影、姿態(tài)合成、掃描鏡校正、尋找校正圖像空間像素到未校正圖像空間的對(duì)應(yīng)像素位置、重采樣這幾個(gè)部分,并在相鄰掃描行間隙的插值上采用了簡(jiǎn)潔的方法。
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