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A Novel Strategy for Improving the Aeromagnetic Compensation Performance of Helicopters

机译:提高直升机航磁补偿性能的新策略

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摘要

An aeromagnetic survey is an important method in magnetic anomaly detection and geophysical prospecting. The magnetic field is typically measured by optically pumped magnetometers (OPM) installed on the aircraft. The measurement accuracy of the OPM is easily affected by the platform-generated magnetic fields. Therefore, aeromagnetic compensation is necessary. The traditional compensation model only considers the permanent, induced, and eddy current interference magnetic field of the aircraft platform. However, the interference field produced by the avionics system, and the relative motion between the aircraft and the magnetometer, are still not taken into account. To address this issue, we proposed a novel strategy to eliminate the additional interference of the platform with two OPMs. Among them, the OPM located farther away from the aircraft serves as a sensing magnetometer, whereas the near OPM serves as a reference magnetometer. The coherent noise suppression method is used to process the residual magnetic field interference after compensation. By establishing the interference magnetic transfer function between the two sensors, the interference field can be suppressed. The results of the experiments demonstrate the effectiveness of the novel strategy, and the standard deviation of residual interference drops from 0.065 nT to 0.045 nT.
机译:航空勘测是磁异常探测和地球物理勘探中的重要方法。磁场通常由安装在飞机上的光泵磁力计(OPM)测量。 OPM的测量精度容易受到平台产生的磁场的影响。因此,需要进行航空磁补偿。传统的补偿模型仅考虑飞机平台的永久,感应和涡流干扰磁场。但是,航空电子系统产生的干扰场以及飞机与磁力计之间的相对运动仍未考虑在内。为了解决这个问题,我们提出了一种新颖的策略来消除平台对两个OPM的额外干扰。其中,离飞机较远的OPM用作感应磁力计,而靠近OPM的则用作参考磁力计。相干噪声抑制方法用于处理补偿后的残余磁场干扰。通过在两个传感器之间建立干扰磁传递函数,可以抑制干扰场。实验结果证明了该新方法的有效性,残余干扰的标准偏差从0.065 nT降至0.045 nT。

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