task control造句
例句與造句
- Just in time task controlling based on fuzzy production rule
基于模糊產(chǎn)生式規(guī)則模型的準(zhǔn)時任務(wù)調(diào)度 - Task control architecture
任務(wù)控制體系: - Task control block tc
任務(wù)控制塊 - Task control block
任務(wù)控制塊 - Section provides technical references and download information for task control architecture
一節(jié)提供了任務(wù)控制體系的技術(shù)參考和下載信息。 - It's difficult to find task control in a sentence. 用task control造句挺難的
- Task control architecture simplifies building task - level control systems for mobile robots
(任務(wù)控制體系)為移動機器人簡化了任務(wù)級控制系統(tǒng)的建立。 - The task control architecture simplifies building task - level control systems for mobile robots
任務(wù)控制體系( task control architecture , tca )為移動機器人簡化了任務(wù)級控制系統(tǒng)的建立。 - The applications of each task control the run - time status of themselves and other tasks through some simple function calls
各個任務(wù)中的應(yīng)用程序通過一些簡單的函數(shù)調(diào)用實現(xiàn)對本任務(wù)或其他任務(wù)運行狀態(tài)的控制。 - Typically user code would reside in separate files and just the task control blocks ( tcb ) would be imported into the top level file
典型的用戶代碼應(yīng)該放在單獨的文件中,僅僅任務(wù)控制塊( tcb )需要導(dǎo)入到頂層文件中。 - The paper also define order ’ s format . it is a simple and practical multi - tasking controlling method by the process of master computer
通過主控進(jìn)程實現(xiàn)windowsnt系統(tǒng)下動態(tài)模擬環(huán)境中多任務(wù)之間的控制,是一種簡便、實用的多任務(wù)的控制方式。 - The task control station is the control and manage center of ucav . thus the research of simulate technology about ucav task control station take a very important place in the ucav research
任務(wù)控制站是ucav系統(tǒng)的控制與管理平臺,開展無人作戰(zhàn)飛機任務(wù)控制站仿真技術(shù)研究具有非常重要的理論意義和應(yīng)用前景。 - As a new product design idea by way of voice of customer ( voc ) , quality function deployment ( qfd ) can transform the information of voc to the technical aims of product exploitation and the method of task control regulations
質(zhì)量功能展開作為一種面向顧客需求的產(chǎn)品開發(fā)設(shè)計方法,是一種將顧客需求信息合理而有效地轉(zhuǎn)換為產(chǎn)品開發(fā)各階段的技術(shù)目標(biāo)和作業(yè)控制規(guī)程的方法。 - A workflow model for the ship design process is designed . five agents , design activity agent , design assistant agent , design task control agent , project assistant agent and project control agent are designed to control the ship design process coordinately
本文給出了適合船舶產(chǎn)品協(xié)同設(shè)計的過程模型,設(shè)計了設(shè)計活動調(diào)度、設(shè)計助理、總設(shè)計任務(wù)調(diào)度、項目助理和項目調(diào)度等五種軟件agent ,討論了agent之間的會話模式和通訊方式。 - Jdl is an interpretative language system . it has data types , expression , control flow statements and user - defined function just like the imperative programming language , but also has data types and statements such as job control statements , task control statements , wait statement , parallel statement and monitor statements particular to jms
Jdl是一種解釋型語言系統(tǒng),既有一般命令式語言所具有的數(shù)據(jù)類型、表達(dá)式、控制流語句和用戶自定義函數(shù)等要素,也另有作業(yè)管理系統(tǒng)所特有的數(shù)據(jù)類型、作業(yè)控制語句、任務(wù)控制語句、等待語句、并行語句和監(jiān)聽語句等。 - Thispaperhasstudiedonthedatalinkinterfacetechniqueoftacticalcontrolsystem . firstof all , functional requirement and the important role of data link interface in tactical controlsystem is introduced ; secondly , with object oriented method , the characteristic of uav taskcontrol process is analysed , and then uav task control information model is established , anddata link interface standard of tactical control system is designed based on this model , including message format and transmission mechanism ; thirdly , data link control module isdesigned based on embedded linux operating system and has realized conversion betweendata link standard interface and the private interface of uav data link ; and then , combinationreal time corba middleware and its event channel , data link control modular componenttechnology is studied , and realization scheme is put forward ; finally , demostration is madebased on prototype of tactical controlsystem , which verify the validaty of data link interfacestandardandembeddeddatalinkcontrolmodules
本文對戰(zhàn)術(shù)控制系統(tǒng)中的數(shù)據(jù)鏈接口技術(shù)進(jìn)行研究:分析了數(shù)據(jù)鏈接口在戰(zhàn)術(shù)控制系統(tǒng)中的功能需求;采用面向?qū)ο蟮姆椒?分析無人機任務(wù)控制問題,建立了無人機任務(wù)控制信息模型,并基于該模型設(shè)計了數(shù)據(jù)鏈接口通信協(xié)議,包括報文格式和傳輸機制;基于嵌入式linux系統(tǒng)設(shè)計了數(shù)據(jù)鏈接口控制模塊,實現(xiàn)了數(shù)據(jù)鏈標(biāo)準(zhǔn)接口與無人機數(shù)據(jù)鏈私有接口之間的相互轉(zhuǎn)換;結(jié)合實時corba中間件及其事件通道,研究了數(shù)據(jù)鏈接口控制模塊組件技術(shù),并給出了實現(xiàn)方案;通過戰(zhàn)術(shù)控制原理實驗系統(tǒng)的演示實驗,驗證了數(shù)據(jù)鏈接口通信協(xié)議和嵌入式數(shù)據(jù)鏈接口控制模塊的有效性。
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