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An Optimized Air-Core Coil Sensor with a Magnetic Flux Compensation Structure Suitable to the Helicopter TEM System

机译:具有适用于直升机TEM系统的磁通量补偿结构的优化空芯线圈传感器

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摘要

The air-core coil sensor (ACS) is widely used as a transducer to measure the variation in magnetic fields of a helicopter transient electromagnetic (TEM) system. A high periodic emitting current induces the magnetic field signal of the underground medium. However, such current also generates a high primary field signal that can affect the received signal of the ACS and even damage the receiver. To increase the dynamic range of the received signal and to protect the receiver when emitting current rises/falls, the combination of ACS with magnetic flux compensation structure (bucking coil) is necessary. Moreover, the optimized ACS, which is composed of an air-core coil and a differential pre-amplifier circuit, must be investigated to meet the requirements of the helicopter TEM system suited to rapid surveying for shallow buried metal mine in rough topography. Accordingly, two ACSs are fabricated in this study, and their performance is verified and compared inside a magnetic shielding room. Using the designed ACSs, field experiments are conducted in Baoqing County. The field experimental data show that the primary field response can be compensated when the bucking coil is placed at an appropriate point in the range of allowed shift distance beyond the center of the transmitting coil and that the damage to the receiver induced by the over-statured signal can be solved. In conclusion, a more suitable ACS is adopted and is shown to have better performance, with a mass of 2.5 kg, resultant effective area of 11.6 m2 (i.e., diameter of 0.496 m), 3 dB bandwidth of 66 kHz, signal-to-noise ratio of 4 (i.e., varying magnetic field strength of 0.2 nT/s), and normalized equivalent input noise of 3.62 nV/m2.
机译:空芯线圈传感器(ACS)被广泛用作测量直升机瞬变电磁(TEM)系统磁场变化的传感器。高周期性发射电流会感应地下介质的磁场信号。但是,这样的电流也会产生较高的主场信号,该信号可能会影响ACS的接收信号,甚至损坏接收器。为了增加接收信号的动态范围并在发射电流上升/下降时保护接收器,必须将ACS与磁通量补偿结构(降压线圈)结合使用。此外,必须研究由空心线圈和差分前置放大器电路组成的优化ACS,以满足直升机TEM系统的要求,该系统适用于在粗糙地形中对浅埋金属矿山进行快速测量。因此,在本研究中制造了两个ACS,并在磁屏蔽室内验证和比较了它们的性能。使用设计的ACS,在宝庆县进行了野外试验。现场实验数据表明,当将降压线圈放置在超出传输线圈中心的允许偏移距离范围内的适当点处时,可以补偿一次磁场响应,并且过高估计会导致对接收器的损坏信号可以解决。总之,采用更合适的ACS并显示出更好的性能,质量为2.5 kg,有效面积为11.6 m 2 (即直径为0.496 m),带宽为3 dB 66 kHz,信噪比4(即变化的磁场强度0.2 nT / s)和归一化等效输入噪声3.62 nV / m 2

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