Lots of factors have influence on the firing accuracy of automatic weapon. During firing,the movement state of gun-shoulder system can be varied due to the impulsion of powder gases and the impact of moving parts,resu...Lots of factors have influence on the firing accuracy of automatic weapon. During firing,the movement state of gun-shoulder system can be varied due to the impulsion of powder gases and the impact of moving parts,resulting in a gunpoint being deviated from initial value to decrease the firing accuracy of weapon. The development of intelligent controlling gun carriage for weapon system is necessary for reflect its automatic firing accuracy objectively. An electronic measuring system for measuring the receiving force and movement of gun-shoulder system under initiative state is built based on the characteristics of standing non-rest automatic weapon. The constitutes of measuring system and the correction method of shoulder receiving force are described,and the mechanical admittance function of gun-shoulder system is obtained using electronically measured data,the modal identification of admittance functions of gun-shoulder system is made by adopting the orthogonal component method,and the key difference between the passive state and initiative state of standing non-rest automatic weapon is discussed.展开更多
文摘Lots of factors have influence on the firing accuracy of automatic weapon. During firing,the movement state of gun-shoulder system can be varied due to the impulsion of powder gases and the impact of moving parts,resulting in a gunpoint being deviated from initial value to decrease the firing accuracy of weapon. The development of intelligent controlling gun carriage for weapon system is necessary for reflect its automatic firing accuracy objectively. An electronic measuring system for measuring the receiving force and movement of gun-shoulder system under initiative state is built based on the characteristics of standing non-rest automatic weapon. The constitutes of measuring system and the correction method of shoulder receiving force are described,and the mechanical admittance function of gun-shoulder system is obtained using electronically measured data,the modal identification of admittance functions of gun-shoulder system is made by adopting the orthogonal component method,and the key difference between the passive state and initiative state of standing non-rest automatic weapon is discussed.
文摘多虚拟同步发电机(virtual synchronous generator,VSG)并网系统不同控制环路间的交互影响不利于高渗透率新能源电网的安全稳定运行,将给VSG的输出角频率带来负面影响。针对该问题,基于机电比拟原理构建了多VSG并网系统功-频环路的机械导纳模型,推导了多VSG并网系统输出角频率的传递函数矩阵。进而提出一种基于相对增益矩阵(relative gain array,RGA)原理的多VSG功-频环路频率交互影响的定量分析方法,并采用数值分析法和频域分析法为对比,研究系统参数变化时多VSG间交互影响的变化规律,从而确定出易产生交互影响的频率区间。最后,通过搭建MATLAB/Simulink仿真模型对上述方法的有效性进行验证。