in space 片刻就, 一會(huì)兒就; 宇宙中; 在空地; 在空間; 在太空; 在宇宙空間,占面積
space n. 1.空間;太空。 2.空隙,空地;場(chǎng)地;(火車輪船飛機(jī)中的)座位;余地;篇幅。 3.空白;間隔;距離。 4.(一段)時(shí)間;片刻;一會(huì)兒。 5.【音樂】(譜表的)線間空白,線間;區(qū)間。 6.【印刷】隔條,襯條,空鉛;空鉛間隔;印刷物(或書寫)的行間空白,打字稿一格或一行的寬度。 7.【電學(xué)】開鍵。 8.電臺(tái)(電視)為廣告節(jié)目留出的時(shí)間。 9.〔美國(guó)〕一年徒刑。 celestial space 天空。 outer space 外層空間;星際[宇宙]空間,外太空。 leave a space 留空白。 blank space 空白。 an open space 空地。 a dangerous space 危險(xiǎn)區(qū)域。 a delivery space 擴(kuò)散器。 a compression space 高壓室。 S- forbids. 限于篇幅。 a long [short] space 長(zhǎng)[短]時(shí)間。 Let us rest a space. 休息一會(huì)兒吧。 Your luggage occupies too much space. 你的行李占地太多了。 The reading room affords an ample space for 500 people. 閱覽室面積可能容五百人。 Please leave a wider space between the lines. 行間的空請(qǐng)留得大一些。 vanish into space 在空中消失。 the space of (多少年)之間。 for a space 暫時(shí)。 for the space of a mile [two years] 一英里的距離[兩年]間。 in space 片刻就,一會(huì)兒就。 vt.,vi. 留間隔;【印刷】行間[字間]襯空鉛。 In designing the houses, space out them from 10 to 12 yards apart. 在設(shè)計(jì)房子時(shí),家與家之間留間隔十至十二碼。 spaced crop 寬行栽培。 spaced emphasis 加寬字母間間隔所表示的強(qiáng)調(diào)。 space out 【印刷】加寬行間[詞間]間隔排勻。
The configuration space contains vendor and product identification information 配置空間包含供貨商和產(chǎn)品辨認(rèn)信息。
Cse configuration space enable 可分配空間
Cse configuration space enable 可分配空間
Also have introduced the function and realization of pci32 module , dma controller module , fifo module , the configuration space module , outside fifo controlling module in the main program at length 詳細(xì)介紹了主程序中的pci32模塊、 dma控制器模塊、 fifo模塊、配置空間模塊、外部fifo控制模塊的功能和實(shí)現(xiàn)。
The character of the nonholonomic system is that the system is controllable when the the dimension of input space is less than of configuration space . so we pay attention to it day by day 這類機(jī)械系統(tǒng)的特性是可用比獨(dú)立的坐標(biāo)數(shù)目少的控制驅(qū)動(dòng)器對(duì)其運(yùn)動(dòng)和位形進(jìn)行控制操作,這也使得非完整系統(tǒng)日益被重視。
Feature tracking in video and sonar subsea sequences with applications . computer vision and image understanding , 2000 , 79 : 92 - 122 . 10 brooks r a , lozano - perez t . a subdivision algorithm in configuration space for findpath with rotation 本論文詳細(xì)介紹了相關(guān)的知識(shí)背景以及將gcop優(yōu)化求解方法應(yīng)用于機(jī)器人路徑規(guī)劃含兩類障礙物的原理和算法設(shè)計(jì),并給出了模擬實(shí)驗(yàn)結(jié)果。
Configuration space against the defects of product family model is constructed for targeting diversity of customer needs and conjoint analysis is applied to decompose the customer preference into the utility of different product attributes 該方法針對(duì)現(xiàn)有產(chǎn)品族模型用于配置設(shè)計(jì)中存在的問題,構(gòu)造了支持產(chǎn)品配置的設(shè)計(jì)空間,并運(yùn)用聯(lián)合分析方法將顧客期望分解為各產(chǎn)品特性的質(zhì)量效用。
9 . by the research of metric tensor and riemann tensor on riemann manifold , we get the inherent curvature of configuration space belonging to parallel mechanism . so the relative coordinates and generalized coordinates are inevitable choice for parallel mechanism . 10 9 、通過對(duì)度量張量和riemann張量的研究,得出并聯(lián)機(jī)構(gòu)運(yùn)動(dòng)可達(dá)子空間的內(nèi)在“彎曲”性質(zhì),指出使用相對(duì)坐標(biāo)系和廣義坐標(biāo)是研究并聯(lián)機(jī)構(gòu)運(yùn)動(dòng)學(xué)和動(dòng)力學(xué)問題的必然選擇。
An important concept proposed in the early stage of robot path planning field is the shrinking of a robot to a point and meanwhile the expanding of obstacles in the workspace as a set of new obstacles . the resulting grown obstacles are called the configuration space cspace obstacles 為解決機(jī)器人規(guī)劃問題,傳統(tǒng)方法的一個(gè)重要思想是把機(jī)器人壓縮為一個(gè)點(diǎn),同時(shí)把障礙物相應(yīng)放大,得到一組configuration space中的障礙物,然后機(jī)器人規(guī)劃問題變?yōu)槔脠D論中的搜索方法尋找最短路徑。
Before describing the experimental platform system , the dissertation introduces some basal acknowledge , including both hardware and software acknowledges . for the hardware part , the indroduction covers system architecture , node type and operating mode of mil - std - 1553b standard , and configuration space of pci bus standard 作為系統(tǒng)研制的軟件基礎(chǔ)知識(shí),本文介紹了vxworksrtos的系統(tǒng)體系結(jié)構(gòu)和組成特點(diǎn),分析說明了vxworksi o子系統(tǒng)模型和設(shè)備驅(qū)動(dòng)程序模型,并對(duì)比microsoftwindowsnt系統(tǒng),分析評(píng)價(jià)了vxworks的實(shí)時(shí)特性。
In classical mechanics, the parameters that define the configuration of a system are called generalized coordinates, and the vector space defined by these coordinates is called the configuration space of the physical system. It is often the case that these parameters satisfy mathematical constraints, which means that the set of actual configurations of the system is a manifold in the space of generalized coordinates.