首页> 外文会议>International Mechanical Engineering Congress and Exposition >ENERGY RESOURCE FOR A RFID SYSTEM BASED ON DYNAMIC FEATURES OF REDDY- LEVINSON BEAM
【24h】

ENERGY RESOURCE FOR A RFID SYSTEM BASED ON DYNAMIC FEATURES OF REDDY- LEVINSON BEAM

机译:基于Reddy-Levinson梁动态特征的RFID系统的能源资源

获取原文
获取外文期刊封面目录资料

摘要

Understanding the effect of design parameters on resonant frequency variation is a critically important aspect of piezoelectric energy harvester device design. As a first step in more accurately investigating the performance of a fixture designed for targeted RFID tag communication that also utilizes an energy harvesting application, this paper analyzes the variations in resonant frequency of a higher-order beam based on Reddy-Levinson theory (RLBT) under rotation effects. A long-term goal of this research is to implement an effective energy harvester on the RFID system. Part of the experimental RFID test fixture can be modeled as a beam (or beam element); thus, understanding the resonance frequency variations due to shear deformation and rotation effects is an important first step in obtaining information about the efficacy of the fixture in serving as an energy harvester. Investigating the performance of a beam also provides valuable information about the maximum power, frequency bandwidth, and tuning ability of the device that can be expected from an analogous energy harvester. For the first time, the resonant frequency variation of a rotating thick beam is investigated. Specifically, RLBT is used to verify the effects of shear deformation upon resonant frequency, and a coupled displacement field is utilized to enable tuning the potential piezoelectric energy harvester to low-input excitations by means of constraining translational and rotational movements of the system based on a linear constraint equation. Navier's method as an analytical-numerical method is adopted to discretize the continuous system and to find resonant frequencies, respectively. Results reveal the significance of beam thickness and rotation effects of the proposed model for the purpose of minimizing energy usage. Current results are compared and verified numerically with available benchmarks to confirm a satisfactory level of accuracy. The proposed model, which is based on a coupled displacement field, can also be used to design other piezoelectric electro-mechanical-systems; e.g., vibration isolators, and vibration controllers. In other words, in an energy-scavenging system, a fundamental understanding of parameters affecting the resonant frequency can be accomplished through the presented analysis. The proposed model highlights the fact that, by adopting a proper speed factor, tuning the piezoelectric energy han'ester to low-input excitations is possible. Additionally, it is observed that the rotation effect on the resonant frequency is more severe than effects of slenderness ratio. Finally, in this paper an improved model is proposed to capture the shear deformation effect, particularly for thick-beam energy harvesters, with the capability of tuning to low-input excitations.
机译:了解设计参数对谐振频率变化的影响是压电能量收割机装置设计的批判性重要方面。作为更准确地研究专为用于目标RFID标签通信设计的夹具性能的第一步,本文分析了基于Reddy-Levinson理论的高阶波束谐振频率的变化(RLBT)在旋转效果下。该研究的长期目标是在RFID系统上实施有效的能源收割机。一部分实验RFID试验夹具可以是梁(或梁元件)的建模;因此,了解由于剪切变形和旋转效果引起的共振频率变化是获得关于固定装置作为能量收割机的效果的信息的重要第一步。调查光束的性能还提供了有关可以从类似能量收割机预期的设备的最大功率,频率带宽和调谐能力提供有价值的信息。首当,研究了旋转厚光束的谐振频率变化。具体地,RLBT用于验证剪切变形对谐振频率时的效果,并且耦合的位移场通过基于a的系统的制约和旋转运动来调整电位压电能量收割机到低输入激励。线性约束方程。采用Navier的方法作为分析数值方法来分别离散化和寻找谐振频率。结果揭示了所提出的模型的光束厚度和旋转效应的意义,以便最大限度地减少能量使用。将当前结果进行比较和验证,可用的可用基准确认令人满意的准确性。基于耦合位移场的所提出的模型,也可用于设计其他压电机电系统;例如,隔振器和振动控制器。换句话说,在能量清除系统中,可以通过所提出的分析来实现对影响谐振频率的参数的基本理解。该建议的模型突出了这一事实,即通过采用适当的速度因子,可以将压电能量调整为低输入激励。另外,观察到对谐振频率的旋转效果比细长比的效果更严重。最后,在本文中,提出了一种改进的模型,以捕获剪切变形效果,特别是对于厚束能量收割机,能够调谐到低输入激励。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号