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Structural Vibration Analysis and Modeling of Marine Diesel Two-stage Vibration Isolation Mounting

机译:船用柴油机两级隔振安装的结构振动分析与建模

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The practical Diesel Two-stage Vibration Isolation Mounting (DTVIM) was constructed to improve vibration isolation technology. As an effective method, modeling was available to obtain most of structural vibration characteristics and helpful to improve vibration isolation of DTVIM. DTVLM was quite complex multi-structure coupling system, so it was divided into multi-subsystems,Mathematical differential representation of each subsystem was given, and dynamic transfer equation was constructed using state vector of generalized load and response. Vibration energy transmission was synthesized by transfer matrix method among multi-subsystems.Vibration energy averaging over the vibration period was primary dynamic parameter and applied to describing vibration of subsystem and analyzing passive vibration isolation of DTVIM. On base of modeling of passive vibration isolation of DTVM, active vibration control technology was introduced to realize the hybrid control strategy. Thus Hermitian quadratic objective function was constructed, the optimal force for active control was gotten by minimizing the total average vibration energy.Structural vibration mechanism of the practical DTVIM was interpreted with combination of active control and passive control.
机译:构造实用的柴油两级隔振安装(DTVIM)以改善振动隔离技术。作为一种有效的方法,可以获得建模以获得大部分结构振动特性,并有助于提高DTVIM的振动隔离。 DTVLM是相当复杂的多结构耦合系统,因此它被分成多个子系统,给出了每个子系统的数学差异表示,并且使用广义负载和响应的状态向量构建动态传递方程。通过多子系统中的转移矩阵方法合成振动能量传输。在振动周期上的振动能量平均是主要动态参数,并应用于描述子系统的振动和分析DTVIM的被动振动隔离。在DTVM被动隔振的建模基础上,引入了主动振动控制技术实现了混合控制策略。因此,通过最小化总平均振动能量来实现主动脉二次物镜函数,通过最小化总平均振动能量。用主动控制和被动控制的组合解释了实际DTVIM的结构振动机制。

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