2) naval gun system
舰炮系统
1.
According to the voice signal of naval gun system, the fault diagnosis measures of this system are put forward based on the fuzzy inference and fuzzy\|neural net theories.
基于模糊推理知识和模糊神经网络的理论,根据舰炮运转时发出的声音信号,提出了舰炮系统的故障检测诊断方案,详细介绍了信号提取的方法和故障分析的算法。
3) flack flowing system
高炮随动系统
1.
A test device for flack flowing systems based on virtual instrument technology is developed.
研制基于虚拟仪器技术的高炮随动系统性能检测装置。
4) 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。
5) anti-missile system of the naval gun
舰炮反导系统
1.
During the test of the anti-missile system of the naval guns intercepting the anti-ship missile of the ultra low zero-feet flight,the collision and the fault produced by the target missile after hitting will be the main reason of causing fail-safety.
舰炮反导系统拦截超低空掠海飞行反舰导弹试验时,靶弹被击中后由于碰撞受力和引发的故障,是可能引起试验安全问题的主要原因。
6) naval gun weapon system
舰炮武器系统
1.
A study on the optimization of naval gun weapon system performance based on geometry programming method;
基于几何规划方法的舰炮武器系统性能优化研究
2.
Evaluation of integrated supportability for naval gun weapon system based on BP neural networks;
基于BP神经网络的舰炮武器系统综合保障性能评价
3.
SAW,TOPSIS,ELECTRE Ⅲ and PROMETHEE Ⅱ are typical ranking and choice methods for optimal configuration of naval gun weapon system.
舰炮武器系统优化配置中典型的排序方法有简单加性加权法(SAW)、逼近理想解的排序方法(TOPSIS)、ELECTREⅢ和PROMETHEEⅡ等,这些方法各具优势、各有局限,应用到实际问题,需要具体分析。
补充资料:舰炮武器系统
舰炮武器系统
shipborne gun weapon system
1 ianPao Wuqi Xitong舰炮武器系统(shipbome gu。system)由舰炮、炮弹和舰炮火控系统构成的舰载武器系统。可使跟踪目标、射击计算、舰炮瞄淮、供弹和发射紧密相连,以提高自动化程度和射击效果。反应时间短,射击精度高。由火控系统的炮瞄雷达或光电跟踪器跟踪目标,火控计算机解算射击诸元(方向、高低瞄准全角和引信分划值);舰炮按计算出的瞄准全角信息,通过舰炮瞄谁随动系统的驱动实施瞄准;供弹系统将炮弹送人发射系统;火控系统的控制台控制舰炮发射,并由跟踪设备检测射弹脱靶量,进行射击校正,使射弹命中目标。20世纪70年代以来,各国装备的中、小口径全自动舰炮武器系统,炮位无人操作,首发可自动装填,有的还能自动更换弹种、装定引信、处理瞎火和实现闭环校正射击。多管小口径全自动舰炮武器系统,更是拦截导弹和低空飞机的有效末端防御武器。 (孙敬一)
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