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Pieced-interval modal response of elastic systems with high-frequency excitations

机译:具有高频激励的弹性系统的分段区间模态响应

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The current technology manifests a great demand for high precision and high positioning accuracy in many engineering applications that range from robot manipulators and high-speed flexible mechanisms to supercritical rotors and the space deployable structures. A reliable dynamic model is crucial to the performance evaluation and precision control of such elastic mechanical systems. The modeling problem becomes even more difficult when higher frequencies of such large scale systems are excited. A pieced-interval modal analysis scheme is introduced to alleviate the problem of handling a system of widespread eignspectrum. A set of energy indices is defined to monitor the energy content in higher modes. The numerical scheme invokes a modal transformation with changeable basis that accounts for higher modes only when they are excited, and picked up more proportional values of the systems total energy. Numerical examples are presented to demonstrate the applicability of the developed method and to display its potential in performing efficient modeling of the dynamic behavior of such systems.
机译:当前的技术在从机器人操纵器和高速柔性机构到超临界转子和空间可展开结构的许多工程应用中都显示出对高精度和高定位精度的巨大需求。可靠的动力学模型对于此类弹性机械系统的性能评估和精度控制至关重要。当激发这种大规模系统的更高频率时,建模问题变得更加困难。引入了分段区间模态分析方案,以减轻处理广谱系统的问题。定义了一组能量指标以监控较高模式下的能量含量。数值方案调用具有可变基础的模态变换,该模态变换仅在较高模态被激发时才考虑较高模态,并获取系统总能量的更多比例值。给出了数值示例,以证明所开发方法的适用性,并展示其在执行此类系统动态行为的有效建模中的潜力。

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