Application acceleration model for the static temperature compensation for temperature error, model accuracy improved significantly.
应用加速度计静态温度模型进行温度误差补偿,模型精度显著提高。
The error of low cost piezoelectric vibratory gyro and its affecting factors are analyzed. Experiments ascertain the feasibility of temperature compensation for gyro error.
分析了低成本压电振动陀螺误差及其影响因素,在实验的基础上得出采用温度补偿陀螺误差的可行性。
In the technology of thermal error compensation in NC machine tool, selecting the temperature variables rationally is key for setting the model of compensation.
在数控机床热误差控制补偿技术中,合理选择温度变量,是建立补偿模型的关键所在。
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