任务 assignment; mission; task; duties; job 接受任务 receive an assignment; accept an assignment; 担负艰巨的任务 shoulder heavy responsibilities; 我们保证完成任务。 we guarantee to fulfil [complete] our mission. 任务重, 时间紧。 the task is hard and we are pressed for time.; 任务观点 get-it-over-and-done-with attitude; perfunctory attitude; routinist point of view
The mission section , the constrain conditions , the weight composition of the maneuverable missile , and the model of used in turbofan engine maneuverable missile were presented 简述了飞航导弹任务剖面、约束条件的给定、导弹的重量组成以及涡扇发动机模型。
Due to mission profile , launched conditions and trajectory , maneuver chains for stand off missile are designed . instruction control model and maneuver model is setup for ucav flight simulation 结合作战任务剖面、导弹发射条件和弹道,设计出无人机防区外攻击导弹发射前、后的机动动作链。
This paper establishes the ship to ship missile weapon system ' s operational effectiveness assessment model , which is under the condition of the typical combat mission of ship to ship missile prescribed 摘要在规定舰舰导弹典型作战任务剖面的情况下,运用美国工业武器系统效能咨询委员会评估武器系统效能的方法,建立舰舰导弹武器系统作战效能评估数学模型,并进行了算例验证和分析。
The research on collaborative simulation based on interfaces used in weapon system does not only solve the technical problem which is caused by the weapon ' s short time and complex task profile , but also joins the engineer tightly , and it is significant in practice 基于接口的多领域协同仿真在武器系统中的应用研究,不仅解决了由于武器系统装备时间短、任务剖面复杂而导致技术难题,还紧密的与工程应用相联系,有很重要的实用意义。
The limit of the static strength theory result in that it can ' t reflect the dynamic loads suffered by the main part of weapon system , so it is difficulty to analyze the reliability and remained life prediction with the short time and the complex task profile 摘要静强度设计理论由于不能反映实际任务剖面所承受的交变动载荷,因此具有在很大的局限性,且由于一些武器系统装备时间短,许多零部件没有达到寿命周期,故对其进行可靠性研究及剩余寿命预测有很大的困难。
In the first part , human - machine interface design of ucav ( unmanned combat air vehicle ) is studied . the design criterion of display , controller and working environment for human in ucav system is presented . in the second part , based on the analysis of human error cause , human generic error model is presented 论文的第一部分研究无人作战飞机系统的人机界面设计,论文给出了无人作战飞机系统的功能框图,根据无人机的任务剖面,综合功效学的研究成果,给出了无人机系统的显示装置、控制装置、工作环境和操作人员的组织情况等的设计准则。