Three-dimensional magnetic field measurement device and magnetic field mapping system
US-2024369649-A1 · Nov 7, 2024 · US
US10330814B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10330814-B2 |
| Application number | US-201816025005-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 2, 2018 |
| Priority date | May 12, 2014 |
| Publication date | Jun 25, 2019 |
| Grant date | Jun 25, 2019 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
An electromagnetic (EM) receiver system for measuring EM signals. The EM receiver system includes a platform; a coil for measuring EM signals; and first to third suspension mechanisms located between the platform and the coil so that the coil oscillates relative to the platform, and the first to third suspension mechanisms attenuate motion induced noise introduced by towing the receiver system above ground.
Opening claim text (preview).
The invention claimed is: 1. An electromagnetic (EM) receiver system for measuring EM signals, the EM receiver system comprising: a platform; at least one coil for measuring EM signals; a coil support to which the at least one coil is fixedly attached; and first to third suspension mechanisms located between the platform and the coil support so that the coil support oscillates relative to the platform, and the first to third suspension mechanisms attenuate a motion induced noise introduced by towing the receiver system above ground, wherein the first suspension mechanism is located within the coil support and the second and third mechanisms are located outside the coil support. 2. The receiver system of claim 1 , wherein the first suspension mechanism is configured such that the at least one coil rotates about a center of mass of the coil support. 3. The receiver system of claim 1 , further comprising: at least one sensor to determine a position or orientation of the receiver system. 4. The receiver system of claim 3 , wherein the at least one sensor is a GPS system, a gyroscope, an inclinometer or a magnetometer. 5. The receiver system of claim 1 , wherein each coil is configured to measure a different component of the magnetic field. 6. The receiver system of claim 4 , wherein a coil measuring one component of the magnetic field is physically split in half, with both halves fixedly attached to the coil support and forming a coil pair. 7. The receiver system of claim 6 , wherein the coil support is configured to house three pairs of coils, one for each axis of an orthogonal system. 8. A method for attenuating motion induced noise in an electromagnetic (EM) receiver system for measuring EM signals, the method comprising: providing a platform; and fixedly attaching at least one coil for measuring EM signals to a coil support and attaching the coil support to the platform with first to third suspension mechanisms, wherein the coil support oscillates relative to the platform, and the first to third suspension mechanisms attenuate the motion induced noise introduced by towing the receiver system above ground, and wherein the first suspension mechanism is located within the coil support and the second and third mechanisms are located outside the coil support. 9. The method of claim 8 , wherein the first suspension mechanism is configured such that the at least one coil rotates about a center of mass of the coil support. 10. The method of claim 8 , further comprising: attaching at least one sensor to determine the position or orientation of the receiver system. 11. The method of claim 10 , wherein the at least one sensor is a GPS system, a gyroscope, an inclinometer or a magnetometer. 12. The method of claim 8 , wherein each coil is configured to measure a different component of the magnetic field. 13. The method of claim 12 , wherein a coil measuring one component of the magnetic field is physically split in half, with both halves fixedly attached to the coil support and forming a coil pair. 14. The method of claim 13 , wherein the coil support is configured to house three pairs of coils, one for each axis of an orthogonal system. 15. The method of claim 8 , wherein the three suspension mechanisms are adjustable so that a power spectrum of the recorded signals is adjustable.
by measuring amplitude · CPC title
operating with fields produced by spontaneous potentials, e.g. electrochemical or produced by telluric currents (G01V3/26 takes precedence) · CPC title
specially adapted for use during transport, e.g. by a person, vehicle or boat · CPC title
Housings or packaging of magnetic sensors (packaging of semiconductor devices H10W99/00); Holders · CPC title
operating with electromagnetic waves {(operating with millimetre waves G01V8/005)} · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.