Xu Rui, Li Changying
College of Engineering, The University of Georgia, 200 D.W. Brooks Drive, Athens, GA 30602, USA.
Sensors (Basel). 2015 Feb 5;15(2):3688-705. doi: 10.3390/s150203688.
To quantitatively measure the impacts during blueberry harvesting and post-harvest handling, this study designed the second generation Berry Impact Recording Device (BIRD II) sensor with a size of 21 mm in diameter and a weight of 3.9 g, which reduced the size by 17% and the weight by 50% compared to the previous prototype. The sensor was able to measure accelerations up to 346 g at a maximum frequency of 2 KHz. Universal Serial Bus (USB) was used to directly connect the sensor with the computer, removing the interface box used previously. LabVIEW-based PC software was designed to configure the sensor, download and process the data. The sensor was calibrated using a centrifuge. The accuracy of the sensor was between -1.76 g to 2.17 g, and the precision was between 0.21 g to 0.81 g. Dynamic drop tests showed that BIRD II had smaller variance in measurements than BIRD I. In terms of size and weight, BIRD II is more similar to an average blueberry fruit than BIRD I, which leads to more accurate measurements of the impacts for blueberries.
为了定量测量蓝莓采摘和采后处理过程中的影响,本研究设计了第二代浆果冲击记录装置(BIRD II)传感器,其直径为21毫米,重量为3.9克,与之前的原型相比,尺寸减小了17%,重量减轻了50%。该传感器能够在最高2千赫兹的频率下测量高达346克的加速度。使用通用串行总线(USB)将传感器直接与计算机连接,省去了先前使用的接口盒。基于LabVIEW的PC软件用于配置传感器、下载和处理数据。该传感器使用离心机进行校准。传感器的精度在-1.76克至2.17克之间,精确度在0.21克至0.81克之间。动态跌落测试表明,BIRD II的测量方差比BIRD I小。在尺寸和重量方面,BIRD II比BIRD I更接近平均蓝莓果实,这使得对蓝莓冲击的测量更加准确。