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1)  gun servo control
火炮随动控制
2)  artillery control
火炮控制
1.
According to the problem of artillery control system and simulated annealing algorithm,a new improved simulated annealing algorithm,a simulated annealing algorithm based DFP is designed,and it is applied to PID control of artillery control system.
针对现有火炮控制系统与模拟退火算法优化存在的问题,提出了一种改进的模拟退火算法用于火炮控制系统PID参数寻优的方案,即基于变尺度法的模拟退火算法。
3)  gun servo system
火炮随动系统
1.
Measurement and analysis were made for frequency characteristic of the gun servo system controlled by azimuth and elevation errors so as to have a full understanding of the sys- tem accuracy,stability storage,frequency band width and mechanical resonance of the gun.
介绍了瑞士GDF-003双35mm高炮随动系统的特点、原理线路,并对方位与高低误差控制火炮随动系统的频率特性在火炮上进行了实测与分析,以便对系统的精度、稳定性储备、频带宽度、火炮的机械谐振等性能有一全面的了解。
2.
Quaternion method was put forward to calculate decoupling error control values of the gun servo system to respectively control movements of traverse and elevating servo systems of the gun.
采用四元数法求解火炮随动系统的解耦误差控制量,使方位、高低随动能够独立控制,可避免将主令与捷联惯导姿态测量的对应值直接求差,作为随动系统的误差控制量,致使两个通道的运动控制存在耦合的问题,从而提高调炮精度。
4)  gun control system
火炮控制系统
1.
According to fault cause and features of tank gun control system, combined with advantage of diagnosis and decision of expert system, overall solution of condition monitoring and fault diagnosis is put forward, condition data collection and diagnosis system design of gun control system based on CAN-bus is performed.
根据坦克火炮控制系统的故障原因及特点,结合专家系统的诊断与决策优势,提出了一套针对其进行状态监测与故障诊断的总体方案;完成了基于CAN总线的火炮控制系统的状态数据采集与检测系统设计;论述了该系统的体系结构、检测原理和诊断机制。
2.
Aimed at features of that electrical element of gun control system includes many types and maintenance is very difficult, the idea of IC simulation of gun control system is proposed.
针对火炮控制系统电气元件类型多、维修难度大的特点,提出了火炮控制系统板级仿真的思路。
5)  radar fire control
雷达炮火控制
6)  gunfire control radar
炮火控制雷达;炮瞄雷达
补充资料:随动控制系统
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性质:设定值不断变化的控制系统,且设定值的变化事先是不知道的,要求系统的输出(被控变量)随设定值变化。例如雷达跟踪系统,各类测量仪表中的变送器本身亦可以看作是一个随动系统,它的输出(指定值)应迅速和正确的随着输入(被测量值)则变化。

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