space navigation 中文意思是什麼

space navigation 解釋
宇宙導航
  • space : n 1 空間;太空。2 空隙,空地;場地;(火車輪船飛機中的)座位;餘地;篇幅。3 空白;間隔;距離。4 ...
  • navigation : n. 1. 航行;導航;領航;航海[航空]術。2. 〈集合詞〉船。3. 〈古語〉航路;海上交通。adj. -al
  1. So we can find awg in communication, radar, navigation, space navigation etc fields

    因此廣泛用於通信、雷達、導航、宇航等領域。
  2. Whether the long - range aerocraft can complete the flight mission has the direct relation with the performance of the fire work departing installation, so it has the great reality significance to optimize the structure of space navigation departing installation

    火工分離裝置工作性能的好壞直接關繫到遠程飛行器完成飛行任務的成功與否,因此對宇航火工分離裝置進行結構優化具有重大的現實意義。
  3. With argumentation system and differential system, gnss is capable of supporting en route flight and cat iii precision approach. this system can meet the need of all flight phases in terms of integrity, precision and continuity. with the application of area navigation and required navigation performance ( rnp ), this would make the parallel route, random route and direct flight route possible, and also improves the efficiency of air space and the flight safety

    在導航系統中,全球衛星導航系統是其主要成分,通過增強系統和差分技術, gnss具有支持從航路飛行到類精密進近的能力,在完好性、精度、可用性、連續性上都可以滿足飛行各階段的要求;隨著區域導航和所需導航性能的實施,平行航路、隨機航路和起點和終點之間的大圓航線直飛得以實現,提高了空域利用率和飛行安全。
  4. The research on autonomous navigation and orbital keeping technology of geosynchronous satellites : selecting position vector in the inertia space and longitude, latitude, radial errors in the hill equation as state variables, the precision of orbit determination caused by track dynamic model error, sampling period, and sensor measurement and install error is analyzed

    同步衛星自主導航與軌道保持技術研究:分別選取慣性空間位置矢量和採用hill方程表示的經、緯、向徑誤差作為狀態量,分析軌道動力學模型誤差、采樣周期以及敏感器測量、安裝等誤差對定軌精度的影響。
  5. When using document explorer, you can arrange the document and navigation windows to increase the viewable space for topics by temporarily hiding windows you do not currently need

    使用文檔資源管理器時,您可以安排文檔窗口和導航窗口,暫時隱藏當前不需要的窗口以增加主題的可查看空間。
  6. Radio occultation technique for the earth ’ s atmospheric profiling, a new application of the global navigation satellite systems, is one of the most advanced space exploring techniques in the 21st century

    地球大氣無線電掩星觀測技術是導航衛星應用新的生長點,是21世紀最先進的空間探測技術之一。
  7. So, it ' s the information architecture ' s requirement to information navigation from the aspect of strengthening the navigation support and adaptability between user and information space, and do more for user. and it ' s the necessary trend that hypermedia information space navigation will grow

    本文以增強用戶與信息空間導航支持的適應性與有效性為研究起點,通過對國內外相關研究成果的系統分析及大量案例的考察,概要總結超媒體信息空間智能導航的研究現狀。
  8. With the quick development of the space navigation in 1990s, there has a higher requirement to the electronic pulse measure circuit of time interval which is the key component of the distance measure instruments

    90年代以來,隨著我國宇航事業的高速發展,人們對測距儀的核心部件? ?電脈沖時間間隔測定器的要求越來越高。
  9. Dead reckoning navigation needs little space, but has high precision. the paper solves the navigation system of " tset - 1 " auv based on the sensors available, and a compact soft has been developed. some experience has gotten during the song hua lake " s test

    本文針對「試驗- 1號」小型機器人導航系統要求和傳感器的配備情況,從工程實用性出發,完成了導航軟體的開發,並進行了松花湖試驗,這為今後水下機器人導航系統的研究與應用提供了有益的借鑒,積累了一定的經驗。
  10. Recently, according to the requirements of some important gps research subjects in the fields of geodesy, geophysics, space - physics and navigation in china, we studied systematically how to correcting the effects of the ionosphere on gps, with high - precision and accuracy

    根據當前大地測量、地球物理、空間物理和導航等領域的科學研究和工程應用中的若干重要gps科研項目的需要,近年來,我們系統研究了電離層延遲的高精度模擬和改正方法。
  11. The cylindrical structure can be used to accelerate volume rendering using space leaping, the algorithm can achieve a better navigation of real - time

    對于生成圓柱狀結構,採用空間跳躍的體繪制方法進行加速繪制,進一步提高了漫遊的實時性。
  12. Attitude angular sensor ( electronic compass ) is widely used in fields of aviation. space flight and navigation etc for navigational orientation and especially in the field of military, so the foreign countries are limited to export the high performance of digital module of attitude angular sensor to our country. the aim of research object is to manufacture the all solid state digital module of attitude angular to meet the requirements of multifields

    姿態角傳感器(電子羅盤)可廣泛應用於航空、航天、航海等需要導航定位的眾多領域,尤其在軍事領域得到廣泛應用,因此國外一直限制高性能姿態角數字模塊對我的出口,本課題研製的主要目的就是研製出全固態的姿態角數字化模塊以滿足我國多領域的需要。
  13. Though the hill equation was improved it cannot satisfied with the long distance navigation. here is considering the main satellite the following satellite and the target satellite format a triangle in the space which was useful in the relative navigation. the orbit of the following satellite was resolved by calculate the hill equation

    盡管如此改進的hill方程依然不能滿足遠距離的相對導航,當從星在攔截目標星時,若目標星在攔截過程中發生軌道機動遠離主星,這里考慮到在已知從星軌道的前提下利用主從星以及目標星在空間形成的三角關系這一有利條件進行幾何法定位的研究,並通過數學模擬對其誤差大小進行了分析。
  14. At the same time, figures involving attribute data about flow field at inlet and outlet downstream or wave motion of water at the downflow head of lock chamber of siyang navigation lock were displayed through gis application system which we developed. according to data of baoying navigation lock acquired by mathematics model, figures about velocities which have the same value, velocities toward cross direction which have the same value and flow field at inlet and outlet upstream were formed. achievement data, space information and attribute information were in connection with figure so as to search for and analysis the information, which is satisfying

    同時完成了江蘇泗陽船閘下游引航道非恆定流及其改善措施的計算分析研究和寶應船閘上游引航道口門區水流條件計算分析研究,運用gis技術和所設計的gis應用系統對泗陽船閘下游引航道內流場以及下閘首水位波動情況進行信息顯示,根據對寶應船閘的計算結果生成上游引航道口門區等流速圖、橫向流速等值線圖和流場圖,使計算分析成果數據、空間信息、屬性信息與圖形顯示有機結合,便於查詢分析,效果令人滿意。
  15. With earth - moon transfer trajectory taken into account, this paper gives the deep space autonomous optical navigation algorithm based on the information of earth - moon

    論文的主要研究內容包括:針對奔月軌道段任務,給出了基於地月信息的自主光學導航方法。
  16. In deep space exploration missions, autonomous navigation technology is very important, and in this paper, we do some research into the autonomous navigation schemes of encountering small celestial bodies. it is mainly described as the follows : firstly, by analyzing the orbit characteristics and task requirements in encounter, the simplified orbit dynamic model for the deep space probe is built up, and whether the corresponding model error that meets the demanding of autonomous navigation task is validated

    在深空探測任務中,自主導航技術是十分重要的,本文對交會小行星的自主導航方法進行研究,主要內容包括:首先,分析交會小行星的軌道特性及任務需求,建立簡化的深空探測器軌道動力學模型,並驗證了簡化模型的誤差能否滿足自主導航任務的需求。
  17. Including the testing of the validity of sensor data and the adapting of the q matrix in reai - time, the kalman filter is researched to improve the real - time, precision and robust of navigation system. with this method, the disturbances resulted from the many uncertainties in non - structure agricultural environment can be overcome, the movement of road line can be followed in the image space so that the technology of visual window can be used, the current measured state of wheeled mobile robot can be substituted by the predicted state to increase the real - time of control system

    包括傳感器數據有效性檢驗、 q陣自適應實時調整等內容,詳細地研究了利用擴展卡爾曼濾波理論改善導航系統實時性、精確性和可靠性的具體方法,以克服農田非結構化自然環境里存在的多種不確定因素給導航系統造成的干擾,跟蹤圖像空間中路徑目標的運動而便於有效地利用視覺窗口技術,提供輪式機器人狀態的預測值代替實測值進行導航控制來改善控制系統的實時性等
  18. Precision transmission device is one kind of the key fundamental components, which are extensively applied to many industry fields including robot industry, machine industry, instrument industry etc. with the development of information technology and space navigation technology, especially the micro - miniaturization, speediness and automation of satellite communication, scouting the flying project, remote sensing and measuring and astronomic observation antenna system, more hard requirements are demanded on precision transmission

    精密傳動是一種重要的基礎性零部件,在機器人、機床、儀器儀表等工業領域有著廣泛的應用。隨著信息和宇航科學技術的發展,特別是衛星通信、飛行目標跟蹤與攔截、遙感與遙測、天文觀察等天線系統的微小型化、快速化及自動化,對精密傳動提出了更高的要求。
  19. Space navigation system

    空間電光導航系統
  20. Without the target ' s maneuver to make itself easier to kill, a ground - based shot would likely have to be made from the side ? or “ out of plane, ” in space navigation parlance

    如果目標不作如此機動,而讓它容易被擊中的話,地面攻擊將很可能從側面飛來。
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