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AN IMPULSIVE METHOD FOR THE ANALYSIS OF PIEZOELECTRIC ENERGY HARVESTERS FOR INTELLIGENT TIRES

机译:一种智能轮胎压电能量收集器的脉冲分析方法

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摘要

Piezoelectric harvesters used for feeding the sensors of intelligent tires experience impulse excitation when the harvester enters the contact patch of the tire. The design, development and set up of advanced harvesters characterized by new materials, optimized shape and specific solutions for tuning require the possibility of testing prototypes in the laboratory simulating the actual working conditions and in particular impulsive events. The aims of tests are manifold: verification of mechanical and electrical performance, comparison with numerical models and updating, identification of parameters of the harvester that are difficult to measure directly. In this paper a testing method based on hammer excitation of an harvester mounted on a specific testing rig is presented. The testing rig is simple and low cost. It makes possible the measurement of the frequency response function (FRF) between output voltage and input acceleration. Design requirements for the testing rig are reported and a validation of the realized system is presented. A multimodal mathematical model is developed in MATLAB to simulate the impulse response of the harvester and in particular to stress the effect of higher order modes. Results show the dominance of the fundamental mode in the response of the tested harvesters. Calculated and experimental results are in good agreement.
机译:当智能采集器进入轮胎的接触面时,用于为智能轮胎传感器供电的压电采集器会受到脉冲激励。以新材料,优化的形状和特定的调校解决方案为特征的高级收割机的设计,开发和设置,要求在实验室中测试原型以模拟实际工作条件,尤其是冲动事件的可能性。测试的目的是多方面的:机械和电气性能的验证,与数值模型的比较以及更新,识别难以直接测量的收割机的参数。本文提出了一种基于锤击激励的安装在特定测试台上的收割机的测试方法。测试台简单,成本低。这样就可以测量输出电压和输入加速度之间的频率响应函数(FRF)。报告了试验台的设计要求,并对实现的系统进行了验证。在MATLAB中开发了一个多峰数学模型,以模拟收割机的脉冲响应,尤其是强调高阶模态的影响。结果表明,基本模式在测试的收割机的响应中占主导地位。计算结果与实验结果吻合良好。

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