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Synthesis of low-complexity mechanical networks with constrained element values

机译:元素值受限的低复杂度机械网络的综合

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This paper investigates the synthesis problem of one-port mechanical networks consisting of one damper, one inerter, and a finite number of springs, where the damping coefficient and inertance are some values in given intervals. Due to the construction limitation, the element values of dampers and inerters are usually required to be constrained in certain ranges instead of any positive values. A necessary and sufficient condition is derived for any positive-real admittance to be realizable as such class of networks, which is in terms of the coefficients of the admittance and the upper and lower bounds of element value constraints. Moreover, the corresponding synthesis procedure is presented based on the derivation process and realizations of three-port spring networks. Finally, numerical examples are given for illustration. The results of this paper can be utilized in the design of inerter-based mechanical control systems.
机译:本文研究了由一个阻尼器,一个惯性器和有限数量的弹簧组成的单端口机械网络的综合问题,其中阻尼系数和惯性是给定间隔内的一些值。由于结构上的限制,通常要求将阻尼器和惰性器的元素值限制在一定范围内,而不是任何正值。得出一个必要的充分条件,使任何正实导纳都可以实现为此类网络,这是根据导纳系数和元素值约束的上限和下限来实现的。此外,基于三端口弹簧网络的推导过程和实现,给出了相应的综合程序。最后,给出了数字示例进行说明。本文的结果可用于基于惯性的机械控制系统的设计。

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