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Simulation of the Calibration Process of the Strain Gauge Measurement Systems

机译:仿真应变仪测量系统的校准过程

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The article presents a method for simulating the calibration of a load force measurement system, based on strain gauge sensors mounted on a mechanical structure, in order to determine relationships for calculating load forces using the indications of the strain gauge sensors. The research whose results we make known aimed to estimate the extent to which the knowledge of the stress or strain on the border of a metallic structure that works in the linear-elastic regime, is possible and, if so, with what precision. Accuracy refers to the difference between the forces estimated using empirical relations using the indications of the deformation sensors and the known values of the loading forces of the structure. This definition of accuracy has a direct counterpart in the physical calibration operation. Using the obtained results, a plausible definition of the calibration operation of the load measurement system of a structure, based on strain gauge sensors, is formulated. The explanation of the simulation method and its benefits is made by analyzing a simple case, with an analytical solution and also, on the case of a structural model of agricultural equipment. Are presented two types of linear relationships that link loads of the structure to the indications of strain gauge sensors, and also, their prediction errors, which are estimated in relation to the “experimental” values (results from numerical analysis). The benefits of the simulation are exposed, among which the optimization of the positioning of the strain gauge sensors and of their number, in order to decrease the prediction errors and to increase the amount of information obtained by calibration.
机译:该物品基于安装在机械结构上的应变计传感器,提出了一种模拟负载力测量系统的校准的方法,以便使用应变仪传感器的指示来确定用于计算负载力的关系。研究结果我们已知的旨在估算在线性弹性方案的金属结构边界对压力或应变的知识的程度是可能的,并且如果是的话,可以精确。精度是指使用经验性关系估计的力与使用变形传感器的指示和结构的装载力的已知值估计的力之间的差异。这种精度定义在物理校准操作中具有直接对应物。使用所得结果,配制了基于应变仪传感器的结构的负载测量系统的校准操作的合理定义。通过分析一种简单的情况,通过分析解决方案,以及在农业设备结构模型的情况下,通过分析简单的情况来解释模拟方法及其益处。呈现两种类型的线性关系,即将结构的负载连接到应变仪传感器的指示,以及它们的预测误差,其估计与“实验”值相关(由数值分析的结果)。仿真的益处是暴露的,其中优化应变仪传感器和它们的数量的定位,以减少预测误差并增加通过校准获得的信息量。

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