基于能量分析的馈能式主动控制系统设计
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国家自然科学基金资助项目(11172247, 60974132, 50823004)


Self-powered active control system design based on energy analysis
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    摘要:

    提出了一个馈能式主动控制系统的设计方案,首先给出了一种馈能式主动控制的电机作动器的驱动方式,使得作动器能够在三种工作模式下进行功能切换.其次,分析了三种模式的工作时间比与能量平衡之间的关系,给出了能够实现能量平衡的基本条件,并得到了系统达到能量平衡的条件.最后,通过一个馈能式主动控制系统设计的算例验证了方法的可行性.仿真结果表明,该主动控制系统能够有效降低振动激励的干扰,并且能够达到能量平衡,即不需要外部的能量供给.

    Abstract:

    A self-powered active control system was designed. First, a kind of drive mode of motor actuator for self-powered active control was given, so that the actuator can work in three modes and switch functions. Second, the relationship between proportion of working hours and energy balance was analyzed, and the basic conditions to achieve energy balance were given, then the conditions of the system energy balance were obtained. Finally, the feasibility of the method was verified by a designed self-powered active control system. The simulation indicates that the active control system can effectively reduce the interference of vibrational excitation, and the energy balance of the system is achieved, which means that the control system does not require an external energy supply.

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宋鹏云,张继业,陈彦秋,王鹏.基于能量分析的馈能式主动控制系统设计[J].动力学与控制学报,2013,11(1):82~88; Song Pengyun, Zhang Jiye, Chen Yanqiu, Wang Peng. Self-powered active control system design based on energy analysis[J]. Journal of Dynamics and Control,2013,11(1):82-88.

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历史
  • 收稿日期:2012-04-23
  • 最后修改日期:2012-06-29
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  • 在线发布日期: 2013-03-07
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