Volume 42 Issue 9
Feb.  2014
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Li Fugui, Xia Qunli, Cai Chuntao, Qi Zaikang. Effect of seeker disturbance rejection rate on parasitical loop stability[J]. Infrared and Laser Engineering, 2013, 42(9): 2341-2347.
Citation: Li Fugui, Xia Qunli, Cai Chuntao, Qi Zaikang. Effect of seeker disturbance rejection rate on parasitical loop stability[J]. Infrared and Laser Engineering, 2013, 42(9): 2341-2347.

Effect of seeker disturbance rejection rate on parasitical loop stability

  • Received Date: 2013-01-19
  • Rev Recd Date: 2013-02-13
  • Publish Date: 2013-09-25
  • In order to analyze effects of disturbance rejection rate on stability of guidance and control systems, a conception of seeker disturbance rejection rate transfer function was presented. Both models of disturbance rejection rate transfer function and parasitical loop of seeker disturbance rejection rate were established. Then the characteristic of disturbance rejection rate transfer function was analyzed using frequency domain methods, and with Routh criteria the effect of guidance parameter on the stability zone of the parasitical loop as well as the influence of guidance dynamics orders on crossover frequency were studied. With an infrared image seeker, the disturbance rejection rate transfer function and stability of parasitical loop were analyzed further. Finally, measures for improving the disturbance rejection rate were presented. The study shows that the parasitical loop may go unstable in the middle frequency region mostly. Improving the gain of the seeker's stability loop in this frequency region is crucial to the disturbance rejection rate level and the stability margins.
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    [3] Mao Xia, Zhang Junwei. Light axis stabilization of half strapdown seeker[J]. Infrared and Laser Engineering, 2007, 36(1): 9-12. (in Chinese) 毛峡, 张俊伟. 半捷联导引头光轴稳定的研究[J]. 红外与激光工程, 2007, 36(1): 9-12.
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    [5] Nesline F W, Zarchan P. Radome induced miss distance in aerodynamically controlled homing missiles[J]. AIAA, 1984, 1845: 99-115.
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    [7] Qi Zaikang, Xia Qunli. Guided Weapon Control System[M]. Beijing: Beijing Institute of Technology Press, 2004.
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    [9] Cui Yingying, Xia Qunli, Qi Zaikang. Seeker platform disturb-ance rejection mathematical model[J]. Journal of Projectiles Rockets Missiles and Guidance, 2006, 26(1): 22-25. (in Chinese) 崔莹莹, 夏群力, 祁载康. 导引头稳定平台隔离度模型研究[J]. 弹箭与制导学报, 2006, (1): 22-25.
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    [11] Li Fugui, Xia Qunli, Qi Zaikang. Effect of parasitic loop on strap-down seeker and compensated with identification method[J]. Systems Engineering and Electronics, 2013, 35(8): 73-78. (in Chinese) 李富贵, 夏群利, 祁载康. 全捷联导引头寄生回路影响与辨识校正[J]. 系统工程与电子技术, 2013, 35(8): 73-78.
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    [13] Xu Ping, Wang Wei, Lin Defu. Effect of seeker isolation on guidance and control of terminal guided projectile[J]. Journal of Ballistics, 2012, 24(1): 17-22. (in Chinese) 徐平, 王伟, 林德福. 导引头隔离度对末制导炮弹制导控制的影响[J]. 弹道学报, 2012, 24(1): 17-22.
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    [15] Du Yunli, Xia Qunli, Qi Zaikang. Research on effect of seeker disturbance rejection rate with phase lag on stability of parasitical loop[J]. Acta Armamentall, 2011, 32(1): 28-33. (in Chinese) 杜运理, 夏群力, 祁载康. 导引头隔离度相位滞后对寄生回路稳定性影响研究[J]. 兵工学报, 2011, 32(1): 28-33.
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Effect of seeker disturbance rejection rate on parasitical loop stability

  • 1. School of Aerospace,Beijing Institute of Technology,Beijing 100081,China

Abstract: In order to analyze effects of disturbance rejection rate on stability of guidance and control systems, a conception of seeker disturbance rejection rate transfer function was presented. Both models of disturbance rejection rate transfer function and parasitical loop of seeker disturbance rejection rate were established. Then the characteristic of disturbance rejection rate transfer function was analyzed using frequency domain methods, and with Routh criteria the effect of guidance parameter on the stability zone of the parasitical loop as well as the influence of guidance dynamics orders on crossover frequency were studied. With an infrared image seeker, the disturbance rejection rate transfer function and stability of parasitical loop were analyzed further. Finally, measures for improving the disturbance rejection rate were presented. The study shows that the parasitical loop may go unstable in the middle frequency region mostly. Improving the gain of the seeker's stability loop in this frequency region is crucial to the disturbance rejection rate level and the stability margins.

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