Ruzza Giuseppe, Guerriero Luigi, Revellino Paola, Guadagno Francesco M
Department of Science and Technology, University of Sannio, 82100 Benevento, Italy.
Sensors (Basel). 2019 Jun 16;19(12):2705. doi: 10.3390/s19122705.
In this work, a low-cost, open-source and replicable system prototype for thermal analysis of low-cost Micro Electro-Mechanical Systems (MEMS) Inertial Measurement Unit (IMU) sensors in tilt measurement perspective is presented and tested. The system is formed of a 3D printed frame, a thermal cell consisting in a Peltier element mounted over a heat sink, and a control and power system. The frame is designed to allow the independent biaxial tilting of the thermal cell through two servomotors. The control board is formed by an Arduino and a self-made board including a power drive for controlling the thermal unit and servomotors. We tested the chamber analyzing the behavior of multiple MEMS IMU onboard accelerometers suitable for measuring tilt. Our results underline the variability of the thermal behavior of the sensors, also for different sensor boards of the same model, and consequently the need for the adoption of a thermal compensation strategy based on thermal analysis results. These data suggesting the need for the analysis of the thermal behavior of MEMS-based sensors, indicate the potential of our system in making low-cost sensors suitable in medium-to-high precision monitoring applications.
在这项工作中,提出并测试了一种低成本、开源且可复制的系统原型,用于从倾斜测量角度对低成本微机电系统(MEMS)惯性测量单元(IMU)传感器进行热分析。该系统由一个3D打印框架、一个由安装在散热器上的珀尔帖元件组成的热单元以及一个控制和电源系统构成。框架的设计允许热单元通过两个伺服电机进行独立的双轴倾斜。控制板由一个 Arduino 和一个自制板组成,自制板包括用于控制热单元和伺服电机的功率驱动器。我们通过测试该腔室来分析多个适用于测量倾斜的MEMS IMU板载加速度计的行为。我们的结果强调了传感器热行为的变异性,即使对于同一型号的不同传感器板也是如此,因此需要基于热分析结果采用热补偿策略。这些表明需要对基于MEMS的传感器的热行为进行分析的数据,显示了我们的系统在使低成本传感器适用于中高精度监测应用方面的潜力。