Safety detection system and method
US-9741225-B1 · Aug 22, 2017 · US
US10001545B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10001545-B2 |
| Application number | US-201715423321-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 2, 2017 |
| Priority date | Sep 9, 2014 |
| Publication date | Jun 19, 2018 |
| Grant date | Jun 19, 2018 |
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Systems and methods for improved location accuracy are provided. For example, some systems can include a location engine, and a plurality of location anchors. In some embodiments, each of the plurality of location anchors can transmit or receive signals to or from an object for determining an angular orientation of the object with respect to the plurality of location anchors, and based on the angular orientation, the location engine can estimate a location of the object. In some embodiments, each of the plurality of location anchors can transmit first signals to the location engine, the location engine can receive a second signal from an object, based on the first signals and the second signal, the location engine can determine a differential pressure between the plurality of location anchors and the object, and based on the differential pressure, the location engine can estimate an altitude of the object.
Opening claim text (preview).
What is claimed is: 1. A system comprising: a location anchor, wherein the location anchor comprises: a transceiver; a programmable processor; executable control software stored on a non-transitory computer readable medium; and a plurality of directional transmitters of electromagnetic radiation, wherein the plurality of directional transmitters are positioned about a perimeter of the location anchor, wherein the directional transmitters are configured to transmit first signals to an object at a plurality of identifiable angles, and wherein, based on the first signals, a location engine is configured to determine an angular orientation of the object with respect to the location anchor; wherein each directional transmitter of the plurality of directional transmitters is configured to include information unique to a respective identifiable angle in a corresponding first signal of the first signals transmitted from the plurality of directional transmitters to the object. 2. The location anchor of claim 1 , further comprising: the location engine in signal communication with the location anchor. 3. The location anchor of claim 2 , wherein the transceiver is configured to transmit, to the location engine, information related to the angular orientation of the object with respect to the location anchor, and wherein, based on the information, the location engine is configured to determine the angular orientation of the object with respect to the location anchor. 4. The location anchor of claim 3 , wherein the location engine is configured to use the determined angular orientation of the object with respect to the location anchor to determine a location of the object. 5. The location anchor of claim 1 , wherein the information includes an identifier of the location anchor and a sub-identifier indicative of an angular direction of the respective identifiable angle. 6. The location anchor of claim 1 , wherein the plurality of directional transmitters is configured to transmit the first signals continuously or at periodic intervals. 7. The location anchor of claim 6 , wherein the plurality of directional transmitters is configured to transmit the first signals at each of the plurality of identifiable angles in a time sequence. 8. The location anchor of claim 1 , wherein the transceiver is configured to transmit a third signal that includes the angular orientation of the object with respect to the location anchor. 9. A system comprising: a location anchor, wherein the location anchor comprises: a transceiver; a programmable processor; executable control software stored on a non-transitory computer readable medium; and a plurality of directional receivers of electromagnetic radiation, wherein the plurality of directional receivers are positioned about a perimeter of the location anchor, wherein the plurality of directional receivers are configured to receive first signals from an object at a plurality of identifiable angles, and wherein, based on the first signals, a location engine is configured to determine an angular orientation of the object with respect to the location anchor; wherein the location engine is in signal communication with the location anchor; wherein the transceiver is configured to transmit, to the location engine, information related to the angular orientation of the object with resect to the location anchor, and wherein, based on the information, the location engines is configured to determine the angular orientation of the object with respect to the location anchor. 10. The location anchor of claim 9 , wherein the location engine is configured to use the determined angular orientation of the object with respect to the location anchor to determine a location of the object. 11. The location anchor of claim 9 , wherein the transceiver is configured to transmit a third signal that includes the angular orientation of the object with respect to the location anchor. 12. A system comprising: a location engine; and a plurality of location anchors, wherein at least one of the plurality of location anchors comprises a plurality of directional transmitters, wherein the plurality of directional transmitters are configured to transmit a plurality of first signals to an object at a plurality of identifiable angles, and wherein each directional transmitter of the plurality of directional transmitters is configured to include information unique to the respective identifiable angle in a corresponding first signal of the plurality of first signals transmitted from the plurality of directional transmitters, wherein the location engine is configured to determine an angular orientation of the object with respect to the at least one location anchor based on the plurality of first signals, and wherein, based on the angular orientation of the object with respect to the at least one location anchor, the location engine is further configured to estimate a location of the object; wherein the object is configured to transmit information related to the angular orientation of the objet with respect to the at least one of the location anchors to the location engine. 13. The system of claim 12 , wherein the plurality of directional transmitters comprises a laser diode. 14. The system of claim 12 , wherein the plurality of directional transmitters comprises an LED. 15. The system of claim 12 , wherein, based on the information, the location engine is configured to determine the estimated location of the object. 16. The system of claim 12 , wherein the information unique to the respective identifiable angle comprises an identifier of the at least one location anchor and a sub-identifier indicative of an angular direction of the respective identifiable angle. 17. The system of claim 1 , wherein the location anchor further comprises a pressure sensor. 18. The system of claim 9 , wherein the location anchor further comprises a pressure sensor. 19. The system of claim 12 , wherein at least one location anchor comprises a pressure sensor. 20. The system of claim 19 , wherein at least one location anchor is configured to transmit pressure measured by the pressure sensor.
using electromagnetic waves other than radio waves · CPC title
by co-ordinating position lines of different shape, e.g. hyperbolic, circular, elliptical or radial · CPC title
using amplitude comparison of signals derived from static detectors or detector systems · CPC title
using amplitude comparison of signals transmitted simultaneously from antennas or antenna systems having differently oriented overlapping directivity-characteristics · CPC title
using amplitude comparison of signals transmitted sequentially from antennas or antenna systems having differently-oriented overlapping directivity characteristics, e.g. equi-signal A-N type · CPC title
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