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首页> 外文期刊>Sensors >Theoretical and Experimental Study of Radial Velocity Generation for Extending Bandwidth of Magnetohydrodynamic Angular Rate Sensor at Low Frequency
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Theoretical and Experimental Study of Radial Velocity Generation for Extending Bandwidth of Magnetohydrodynamic Angular Rate Sensor at Low Frequency

机译:低频扩展磁流体动力角速率传感器带宽的径向速度产生的理论和实验研究

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The magnetohydrodynamics angular rate sensor (MHD ARS) has received much attention for its ultra-low noise in ultra-broad bandwidth and its impact resistance in harsh environments; however, its poor performance at low frequency hinders its work in long time duration. The paper presents a modified MHD ARS combining Coriolis with MHD effect to extend the measurement scope throughout the whole bandwidth, in which an appropriate radial flow velocity should be provided to satisfy simplified model of the modified MHD ARS. A method that can generate radial velocity by an MHD pump in MHD ARS is proposed. A device is designed to study the radial flow velocity generated by the MHD pump. The influence of structure and physical parameters are studied by numerical simulation and experiment of the device. The analytic expression of the velocity generated by the energized current drawn from simulation and experiment are consistent, which demonstrates the effectiveness of the method generating radial velocity. The study can be applied to generate and control radial velocity in modified MHD ARS, which is essential for the two effects combination throughout the whole bandwidth.
机译:磁流体动力学角速率传感器(MHD ARS)因其在超宽带宽中的超低噪声和在恶劣环境下的抗冲击性而备受关注。然而,其低频性能差会妨碍其长时间工作。本文提出了一种结合科里奥利效应和MHD效应的改进型MHD ARS,以将测量范围扩展到整个带宽,其中应提供适当的径向流速,以满足改进型MHD ARS的简化模型。提出了一种可在MHD ARS中通过MHD泵生成径向速度的方法。设计用于研究MHD泵产生的径向流速的设备。通过数值模拟和装置实验研究了结构和物理参数的影响。仿真和实验得出的励磁电流产生的速度的解析表达式是一致的,证明了产生径向速度的方法的有效性。该研究可用于在改进的MHD ARS中生成和控制径向速度,这对于在整个带宽范围内将两种效果组合在一起至关重要。

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