首页> 外文会议>Proceedings of the ASME international design engineering technical conferences and computers and information in engineering conference 2017 >DESIGN UNDER UNCERTAINTY FOR A PIEZOELECTRIC ENERGY HARVESTER TO POWER A TIRE PRESSURE MONITORING SYSTEM
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DESIGN UNDER UNCERTAINTY FOR A PIEZOELECTRIC ENERGY HARVESTER TO POWER A TIRE PRESSURE MONITORING SYSTEM

机译:不确定性下的压电能量采集器为轮胎压力监测系统供电的设计

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In this paper we perform reliability analysis for a piezoelectric energy harvester to power the tire pressure monitoring sensor (TPMS) under various uncertainty. Reliability based design optimization (RBDO) is applied to improve the performance of the system. Wasted vibrational energy in a vehicle's rotating tire can be exploited to enable a self-powered TPMS. Piezoelectric type energy harvesters (EHs) are frequently used to collect vibrational energy and power such devices. While exposed to a high impact loading condition in a tire, the harvester experiences increasing strains which is under a higher risk of mechanical failure. Therefore, there is a need for a design to enhance the harvester's fatigue life as well as maintaining the required power generation. Multiple design optimization studies found to consider the design update by traditional deterministic design optimization (DDO) which does not show reliable performance as it is unable to account for various uncertainty factors including manufacturing tolerances, environmental effects, and material properties. In this study, we consider uncertainty issue by using reliability-based design optimization under presence of various source of uncertainties. The RBDO problem is defined to satisfy power requirement and durability concerns as the constraints while considering design limitations such as compactness and weight. The time varying response of the EH such as generated power, dynamic strain, and stresses are measured by a transient analysis. Sequential Quadratic Programming (SQP) algorithm is used for both DDO and RBDO, and the design results are compared. The RBDO results demonstrate that the reliability of EH is increased by 26% with scarifying the objective function for 2.5% compared to DDO.
机译:在本文中,我们对压电能量采集器进行可靠性分析,以在各种不确定性下为轮胎压力监测传感器(TPMS)供电。基于可靠性的设计优化(RBDO)用于改善系统性能。可以利用车辆旋转轮胎中浪费的振动能来实现自供电TPMS。压电式能量收集器(EH)通常用于收集振动能量并为此类设备提供动力。在轮胎承受高冲击负荷的条件下,收割机承受的应变增加,因此机械故障风险更高。因此,需要一种设计来延长收割机的疲劳寿命并维持所需的发电量。多项设计优化研究发现,通过传统的确定性设计优化(DDO)考虑了设计更新,该设计不具有可靠的性能,因为它无法考虑各种不确定性因素,包括制造公差,环境影响和材料特性。在这项研究中,我们在存在各种不确定性来源的情况下通过使用基于可靠性的设计优化来考虑不确定性问题。定义RBDO问题是为了满足功耗要求和耐久性问题,同时还要考虑诸如紧凑性和重量之类的设计限制。 EH的时变响应(例如,产生的功率,动态应变和应力)通过瞬态分析进行测量。 DDO和RBDO都使用了顺序二次规划(SQP)算法,并对设计结果进行了比较。 RBDO结果表明,与DDO相比,EH的可靠性提高了26%,而目标函数却降低了2.5%。

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