期刊文献+

Nonlinear Control of Beam Halo—Chaos in Accelerator—Driven Clean Nuclear Power System 被引量:2

Nonlinear Control of Beam Halo-Chaos in Accelerator-Driven Clean Nuclear Power System
下载PDF
导出
摘要 Beam halo-chaos in high-current accelerators has become a key concerned issue because it can cause excessive radioactivity from the accelerators therefore significantly limits their applications in industry,medicine,and national defense.Some general engineering methods for chaos control have been developed in recent years,but they generally are unsuccessful for beam halo-chaos suppression due to many technical constraints.Beam halo-chaos is essentially a spatiotemporal chaotic motion within a high power proton accelerator.In this paper,some efficient nonlinear control methods,including wavelet function feedback control as a special nonlinear control method,are proposed for controlling beam halo-chaos under five kinds of the initial proton beam distributions (i.e.,Kapchinsky-Vladimirsky,full Gauss,3-sigma Gauss,water-bag,and parabola distributions) respectively.Particles-in-cell simulations show that after control of beam halo-chaos,the beam halo strength factor is reduced to zero,and other statistical physical quantities of beam halo-chaos are doubly reduced.The methods we developed is very effective for suppression of proton beam halo-chaos in a periodic focusing channel of accelerator.Some potential application of the beam halo-chaos control in experiments is finally pointed out. Beam halo-chaos in high-current accelerators has become a key concerned issue because it can cause excessive radioactivity from the accelerators therefore significantly limits their applications in industry, medicine, and national defense. Some general engineering methods for chaos control have been developed in recent years, but they generally are unsuccessful for beam halo-chaos suppression due to many technical constraints. Beam halo-chaos is essentially a spatiotemporal chaotic motion within a high power proton accelerator. In this paper, some efficient nonlinear control methods, including wavelet function feedback control as a special nonlinear control method, are proposed for controlling beam halo-chaos under five kinds of the initial proton beam distributions (i.e., Kapchinsky–Vladimirsky, full Gauss, 3-sigma Gauss, water-bag, and parabola distributions) respectively. Particles-in-cell simulations show that after control of beam halo-chaos, the beam halo strength factor is reduced to zero, and other statistical physical quantities of beam halo-chaos are doubly reduced. The methods we developed is very effective for suppression of proton beam halo-chaos in a periodic focusing channel of accelerator. Some potential application of the beam halo-chaos control in experiments is finally pointed out.
出处 《Communications in Theoretical Physics》 SCIE CAS CSCD 2002年第6期675-681,共7页 理论物理通讯(英文版)
关键词 加速器 粒子束晕圈混沌 非线性控制 proton beam halo-chaos nonlinear control wavelet-based feadback controller
  • 相关文献

参考文献22

  • 1C. Rubbia, "A High Gain Energy Amplifier Operated with Fast Neutron", Proceedings of the Third International Conference on Accelerator-Driven Transmutation Technologies and Applications, Las Vegas, July (1994)p. 346. Also see CERN/AT/93-47(ET) (1993).
  • 2J.Q. Fang, Nature (in Chinese) 22 (2000) 63.
  • 3R.L. Gluckstern, Phys. Rev. Lett. 73 (1994) 1247.
  • 4R.L. Gluckstern, A.V. Fedotov, S.S. Kurennoy, et al.,Phys. Rev. E58 (1998) 4977.
  • 5C. Chen and R.C. Davidson, Phys. Rev. Lett. 72 (1994)2195.
  • 6Y. Fink and C. Chen, Phys. Rev. E55 (1997) 7557.
  • 7J.M. Lagniel, Phys. Rev. A345 (1994) 46.
  • 8A.V. Fedotov and R.L. Gluckstern, Phys. Rev. ST Accel.Beam 2 (1999) 014201.
  • 9R.L. Gluckstern and A.V. Fedotov, Phys. Rev. ST Accel.Beam 2 (1999) 054201.
  • 10F.T.S. Wang, Phys. Rev. E61 (1999) 855.

同被引文献15

引证文献2

二级引证文献7

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部