可控振动保护系统:优化和节能

V. Chernyshev, R. Polyakov, O. Fominova
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引用次数: 0

摘要

可控振动保护系统的能量效率被定义为它们所达到的振动安全指标与达到预期指标所需的能源成本之比。为了解决可控振动保护的优化问题,采用了可接受泛函最优性的充分条件,即最小原则,在对系统状态初始方程进行数值积分的过程中逐步实现,从而可以重现最优控制数值数组和系统状态的相关分量。采用最小原则分步优化算法,对粘阻阻尼器和势能回收器间接控制的振动保护系统进行动态过程优化。已经确定,在这些系统中允许消除谐振现象的最优控制是奇异型的位置函数,在具有受控阻尼器和回热器的振动保护系统中,其继电器开关与物体的绝对速度和相对速度的符号变化以及物体的速度和相对位移的符号变化有关。
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Controlled vibration protection systems: optimization and energy efficiency
The energy efficiency of controlled vibration protection systems is defined as the ratio of the vibration safety indicator they achieve to the cost of energy resources necessary to achieve the desired indicator. To solve the optimization problems of controlled vibration protection, a sufficient condition for the optimality of the accepted functional and, accordingly, the minimum principle, was used, the step-by-step implementation of which, in the course of numerical integration of the initial equations of the state of the system, makes it possible to reproduce the optimal control numeric arrays and the related components of the system state. The algorithm of the step-by-step procedure of the minimum principle was used to optimize the dynamic processes in the vibration protection system with indirect control of the viscous resistance damper and the potential energy recuperator. It has been established that the optimal controls that allow eliminating resonant phenomena in these systems are positional functions of a singular type, the relay switching of which in vibration protection systems with a controlled damper and recuperator is associated with a change in the sign of the absolute and relative velocity of the object and with a change in the sign of the velocity and relative displacement of the object.
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