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   发动机道路 的翻译结果: 查询用时:0.566秒
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发动机道路
相关语句
  engine road
    Simulation and Experimental Research on Vehicle Engine Road Running Mode
    车用发动机道路行驶工况的模拟实验研究
短句来源
  “发动机道路”译为未确定词的双语例句
    Track searching of simulating platform of tank engine's movement state based on improved genetic algorithm
    基于改进遗传算法的坦克发动机道路模拟测试平台轨迹寻优
短句来源
    RESEACH ON DYNAMICS OF THE PLATFORM USED TO SIMULATE THE TANK ENGINE'S MOVEMENT STATE
    坦克发动机道路模拟测试平台动力学研究
短句来源
    Research on Track Optimal Searching of Tank Engine's Movement State Simulating Platform
    坦克发动机道路模拟测试平台轨迹寻优研究
短句来源
    The platform is a test-equipment which is used to simulate the tank engine's movement state when the tank runs on the road. A multi-branch parallel manipulator with redundant branches driven by hydraulic power is adopted, which can meet the requirements of heavy load, high agility and complicated movement.
    针对大型研制项目坦克发动机道路模拟测试平台,采用冗余构件多分支并联运动系统的结构形式,满足了其大负载、高灵活度、运动复杂的实际要求。
短句来源
    The platform is a test-equipment which is used to simulate the tank engine's movement state. A multi-branches parallel manipulator with redundant branches driven by hydraulic power is adopted,which can meet the requirements of heavy load,high agility and complicated movement.
    坦克发动机道路模拟测试平台采用冗余构件多分支并联运动系统结构形式,满足了大负载、高灵活度、运动复杂的实际要求.
短句来源
查询“发动机道路”译词为用户自定义的双语例句

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例句
为了更好的帮助您理解掌握查询词或其译词在地道英语中的实际用法,我们为您准备了出自英文原文的大量英语例句,供您参考。
  engine road
Preliminary results of an engine road test are described.
      
The effect of fire engine road performance on alarm response travel times
      


The latest imported engine dynamic test stand is introduced in this paper, Its allocation, characteristics and functions are also stated. This test stand can simulate the road condition of engine and transmission system, it can be used in researching match of the engine and the emission.

本文介绍了最新引进的发动机动态试验台,对其配置、特点、功能作了叙述。该试验台可模拟汽车发动机的道路工况及传动系统,可用于汽车发动机的匹配研究和排放研究。

The engine running signals are acquired in the computer and the running parameters are calculated simultaneously.The control signals are given to the dynamometer through the interface circuit.Therefore,all varying modes of the engine can be satisfied with this approach and the simulation of real vehicle engine running mode can be realized.

利用计算机采集发动机信号,实时地计算出发动机的运行参数,控制信号由计算机通过接口电路输出到测功机,并可在计算机中编程进行控制测功机的励磁电流的变化,这样就可以实时地满足发动机各种变工况的运行需要,从而实现车用发动机道路行驶工况的模拟

A platform is presented to simulate the tank engine's movement state as the tank runs on the road.A multi-branches parallel manipulator with redundant branches driven by hydraulic power is adopted,which can meet the requirements of heavy load,high agility and complicated movement.Because of the peculiar structure of the system,this study introduces an improved genetic algorithm involving mechanism of simulated annealing with initial population gradually floating to carry out the six-dimension track searching....

A platform is presented to simulate the tank engine's movement state as the tank runs on the road.A multi-branches parallel manipulator with redundant branches driven by hydraulic power is adopted,which can meet the requirements of heavy load,high agility and complicated movement.Because of the peculiar structure of the system,this study introduces an improved genetic algorithm involving mechanism of simulated annealing with initial population gradually floating to carry out the six-dimension track searching. The simulation results are compared with the experiment data.The analysis validates that the structure of the system is reasonable and the algorithm is effective.This method perfectly combines the global optimal characteristic of genetic algorithm and the local optimal specialty of simulated annealing algorithm.Furthermore,by applying the technique of initial population gradually floating to the improved genetic algorithm,the algorithm not only avoids premature convergence,but also makes the neighbor-function structure more reasonable.The robust capability of initial value is also improved.The precision of this algorithm can reach the bound of 0.002mm or 0.0015°.

针对坦克发动机道路模拟测试平台,采用冗余构件多分支并联运动系统结构型式,满足了其大负载、高灵活度、运动复杂的实际要求.鉴于系统结构型式的特殊性,采用基于初始种群渐进漂移的自适应改进模拟退火遗传算法,对此并联运动系统进行六维轨迹寻优解算,并将系统六维运动轨迹解算仿真结果与实验数据进行对比分析,验证了此系统结构的合理性及所采用算法的有效性.该方法不仅将遗传算法全局规划能力与模拟退火法局域优化特性进行了有效结合,同时通过引入初始种群渐进漂移技术,算法既避免了早熟现象又改善了邻域函数结构和初值鲁棒性,其计算精度达到了0.002mm或0.0015°.

 
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