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    • 3. 发明申请
    • SYSTEMS AND METHODS FOR A COMPOSITE MAGNETIC FIELD SENSOR FOR AIRBORNE GEOPHYSICAL SURVEYS
    • 用于飞机地球物理测量的复合磁场传感器的系统和方法
    • US20170068014A1
    • 2017-03-09
    • US15120628
    • 2015-02-26
    • CGG SERVICES SA
    • Philip MILESJason BERRINGERAdam SMIAROWSKI
    • G01V3/165G01V3/16
    • G01V3/165G01V3/16
    • Systems and methods for a composite magnetic field sensor is disclosed. The electromagnetic survey system includes a first receiver configured to sense signals in a first spectrum based on sensing a magnetic field. The system includes a second receiver configured to sense signals in a second spectrum based on sensing a time rate of change of the magnetic field. The second spectrum has a frequency range higher than the first spectrum. The system further includes a transmitter configured to transmit a specified waveform and a control system configured to control the transmitter to transmit the specified waveform. The control system is also configured to receive signals sensed by the first receiver, receive signals sensed by the second receiver, and store the signals received from the first receiver and the signals received from the second receiver.
    • 公开了一种复合磁场传感器的系统和方法。 电磁勘测系统包括:第一接收器,被配置为基于感测磁场来感测第一频谱中的信号。 该系统包括被配置为基于感测磁场的时间变化率来感测第二频谱中的信号的第二接收机。 第二个频谱的频率范围高于第一个频谱。 该系统还包括被配置为发送指定波形的发射机和被配置为控制发射机发送指定波形的控制系统。 控制系统还被配置为接收由第一接收机感测的信号,接收由第二接收机感测的信号,并且存储从第一接收机接收的信号和从第二接收机接收的信号。
    • 4. 发明申请
    • APPARATUS FOR AIRBORNE GEOPHYSICAL PROSPECTING USING BOTH NATURAL AND CONTROLLED SOURCE FIELDS AND METHOD
    • 使用自然天线和控制源的场地和方法进行航空地球物理勘探的装置
    • US20160231449A1
    • 2016-08-11
    • US14961973
    • 2015-12-08
    • CGG SERVICES SA
    • Philip MILES
    • G01V3/16G01V3/08
    • G01V3/165G01V3/16
    • A composite electromagnetic (EM) system and method for measuring naturally occurring magnetic fields and controlled magnetic fields. The composite EM system includes a housing, an audio-magnetotelluric (AMT) system attached to the housing and measuring natural magnetic fields generated by earth, a frequency-domain EM (FDEM) system attached to the housing and measuring controlled magnetic fields generated by a controlled source, and a position and orientation (POS) system attached to the housing and configured to calculate an orientation and a position of the AMT system and housing relative to the earth. The housing is configured to be attached to an aircraft for being airborne while measuring the natural magnetic fields and the controlled magnetic fields.
    • 一种用于测量自然发生的磁场和受控磁场的复合电磁(EM)系统和方法。 复合EM系统包括壳体,附接到壳体的音频 - 大地电磁(AMT)系统和测量由地球产生的自然磁场,附接到壳体的频域EM(FDEM)系统,并测量由 控制源和位置和定向(POS)系统,其连接到壳体并且被配置为计算AMT系统和壳体相对于地球的取向和位置。 壳体被配置为附接到飞行器以便在测量自然磁场和受控磁场的同时进行机载。
    • 5. 发明申请
    • GEOPHYSICAL SURVEY SYSTEM USING HYBRID AIRCRAFT
    • 使用混合飞机的地球物理测量系统
    • US20160161625A1
    • 2016-06-09
    • US14615718
    • 2015-02-06
    • CGG SERVICES SA
    • Richard PARTNERAdam SMIAROWSKITom PAYNEStuart STEVENSONGeorge NADERPhilip MILES
    • G01V3/16G01V3/17G01V3/165
    • G01V3/165
    • There are systems and methods for performing a geophysical survey using a hybrid aircraft which includes an apparatus configured to perform the geophysical survey. The system including: three mutually orthogonal transmitters configured to transmit electromagnetic (EM) waveforms towards the ground which creates a secondary magnetic field, wherein the three mutually orthogonal transmitters are attached to the hybrid aircraft; three mutually orthogonal null-coupled receivers configured to obtain measurements associated with the secondary magnetic field, wherein the three mutually orthogonal null-coupled receivers are attached to the hybrid aircraft; and three mutually orthogonal gradient receivers configured to obtain measurements, wherein the three mutually orthogonal gradient receivers are attached to the hybrid aircraft.
    • 存在使用混合飞行器执行地球物理勘测的系统和方法,该混合飞行器包括被配置为执行地球物理测量的装置。 该系统包括:三个相互正交的发射机,被配置为向地面传输电磁(EM)波形,产生次级磁场,其中三个相互正交的发射机连接到混合飞行器; 三个相互正交的零耦合接收器,被配置为获得与次级磁场相关联的测量,其中三个相互正交的零耦合接收器附接到混合飞行器; 以及配置成获得测量的三个相互正交的梯度接收机,其中三个相互正交的梯度接收机附接到混合飞行器。
    • 7. 发明申请
    • SYSTEMS AND METHODS FOR MULTIPLE BANDWIDTH ELECTROMAGNETIC GEOPHYSICAL EXPLORATION
    • 多波段电磁地球物理探测系统与方法
    • US20170045638A1
    • 2017-02-16
    • US15305769
    • 2015-04-21
    • CGG SERVICES SA
    • Adam SMIAROWSKIJason BERRINGERPhilip MILES
    • G01V3/16G01V3/17
    • G01V3/16G01V3/17
    • A system and method for electromagnetic geophysical exploration is provided. The system includes a first transmitter (210) configured to transmit a first waveform in a first spectrum and a first receiver (212) configured to sense signals in the first spectrum. The system also includes a second transmitter (220) configured to transmit a second waveform in a second spectrum, and a second receiver (222) configured to sense signals in the second spectrum and minimum-coupled to the second transmitter. The second spectrum has a frequency higher than a frequency of the first spectrum. The system further includes a control portion configured to control the first transmitter to transmit the first waveform, and control the second transmitter to transmit the second waveform after a specified time delay. The control portion is configured to receive signals sensed by the first receiver in the first spectrum, and receive signals sensed by the second receiver in the second spectrum.
    • 提供了一种用于电磁地球物理勘探的系统和方法。 该系统包括被配置为发射第一频谱中的第一波形的第一发射机(210)和被配置为感测第一频谱中的信号的第一接收机(212)。 该系统还包括被配置为在第二频谱中发射第二波形的第二发射机(220)和被配置为感测第二频谱中的信号并且最小耦合到第二发射机的第二接收机(222)。 第二频谱的频率高于第一频谱的频率。 该系统还包括控制部分,其被配置为控制第一发射机发送第一波形,并且在指定的时间延迟之后控制第二发射机发送第二波形。 控制部分被配置为接收由第一频谱中的第一接收机感测的信号,并且接收由第二接收机在第二频谱中感测到的信号。