Patent · US11448509B1 · B1 · US
System and method for facilitating limited area GPS
- (11) Publication number
- US11448509B1
- (21) Application number
- 16/231,444
- (22) Filing date
- 2018-12-22
- (30) Priority date
- 2018-12-22
- (43) Publication date
- 2022-09-20
- (45) Date of grant
- 2022-09-20
- (51) IPC
- G01C 21/20; G01S 19/13; H04W 4/02
- (52) CPC
- G01C Measuring distances, levels or bearings; surveying; navigation; gyroscopic instruments; photogrammetry or videogrammetry: 21/206, 15/002, 21/20
- G01S Radio direction-finding; radio navigation; determining distance or velocity by use of radio waves; locating or presence-detecting by use of the reflection or reradiation of radio waves; analogous arrangements using other waves: 11/16, 19/13, 5/0205, 5/14, 5/30
- H04W Wireless communication networks: 4/02
- (72) Inventors
- Yoon Phil Kim
- (54) Title
- System and method for facilitating limited area GPS
- (57) Abstract
Disclosed are a system for identifying the position of mobile object, comprising a positioning module, a set of beacons and processor configured to determine the position of the positioning module based on the data gathered from the interaction between the positioning module and each one of the set of beacons. More specifically, the limited area positioning system utilizes signal emitted from the positioning module and the signals emitted from the each of the beacons in response to the signal from the positioning module. Using the signals transmitted from the positioning module and the beacons, at least three circles can be formed, and the limited area positioning system determines the intersecting point of those three circles as the position of the positioning module.
- Full text
- View on Google Patents
Claims (5)
- A method of facilitating a limited area positioning system, comprising: emitting a module signal that propagates substantially in a straight line path from a module signal transmitter, in a predetermined rotational steps about an axis around a positioning module by adjusting a stepper motor coupled to the module signal transmitter; emitting a beacon signal from a beacon when said beacon receives the module signal emitted from the module signal transmitter; recording the stepper motor's first rotational degree, second rotational degree and third rotational degree upon receiving the beacon signal from the first beacon, the second beacon and the third beacon, respectively, to obtain a first angle formed at the positioning module between the first beacon and the second beacon, a second angle formed at the positioning module between the first beacon and the third beacon, and a third angle formed at the positioning module between the second beacon and the third beacon; preparing three datasets, each dataset containing a set of coordinates of points of a circle defined by coordinates of the two beacons among said three beacons and the obtained angle between said two beacons; and comparing the three datasets to identify a coordinate of a point that exists in all of the three datasets as a current position of the positional module.
- The method of claim 1 further comprising a step for converting the identified coordinate of the point that exist in all of the three datasets into a relational coordinate of the positioning module associated with said three beacons.
- The method of claim 1, wherein the module signal is one of a laser signal and an infrared signal.
- The method of claim 1, wherein the beacon signal is one of an electromagnetic signal and an acoustic signal.
- The method of claim 4, wherein the beacon signal is radio frequency identification (RFID) signal that is unique to the beacon emitting said beacon signal.
Description
The invention relates to a position system and method within limited area, and more particularly relates to an indoor positioning and posture measurement system based on directional and non-directional signal scanning and measurement method.
Various known navigation and positioning systems enable people in cars, boats, aircraft, and other moveable objects to efficiently travel between given locations. Knowing a precise current geographic location or starting location and a desired destination or ending location enables navigation systems to provide customized directions that indicate which direction that moveable object should travel to reach the destination or ending location. Various known navigation systems use path-planning algorithms that combine knowledge of conduits (such as streets, bridges, or traffic rules), obstacles (such as freeway congestion), and current real-time positioning information to determine and output detailed directions.
Various known navigation systems are enhanced through graphical user interfaces that visually depict the surroundings of a current position, identify points of interest, and provide a highlight of a path of travel to reach a destination. In one known example, vehicular navigation systems use the Global Positioning System (widely known as GPS). GPS is a space-based global navigation satellite system (GNSS) that provides reliable location and time information to anyone on or near the Earth.
Citations (5)
- US5491670A
- US9703002B1
- US20050282558A1
- US20130063307A1
- US20130084889A1
Record as JSON
{
"publication_number": "US11448509B1",
"country": "US",
"kind": "B1",
"title": "System and method for facilitating limited area GPS",
"abstract": "Disclosed are a system for identifying the position of mobile object, comprising a positioning module, a set of beacons and processor configured to determine the position of the positioning module based on the data gathered from the interaction between the positioning module and each one of the set of beacons. More specifically, the limited area positioning system utilizes signal emitted from the positioning module and the signals emitted from the each of the beacons in response to the signal from the positioning module. Using the signals transmitted from the positioning module and the beacons, at least three circles can be formed, and the limited area positioning system determines the intersecting point of those three circles as the position of the positioning module.",
"claims": [
"1. A method of facilitating a limited area positioning system, comprising: emitting a module signal that propagates substantially in a straight line path from a module signal transmitter, in a predetermined rotational steps about an axis around a positioning module by adjusting a stepper motor coupled to the module signal transmitter; emitting a beacon signal from a beacon when said beacon receives the module signal emitted from the module signal transmitter; recording the stepper motor's first rotational degree, second rotational degree and third rotational degree upon receiving the beacon signal from the first beacon, the second beacon and the third beacon, respectively, to obtain a first angle formed at the positioning module between the first beacon and the second beacon, a second angle formed at the positioning module between the first beacon and the third beacon, and a third angle formed at the positioning module between the second beacon and the third beacon; preparing three datasets, each dataset containing a set of coordinates of points of a circle defined by coordinates of the two beacons among said three beacons and the obtained angle between said two beacons; and comparing the three datasets to identify a coordinate of a point that exists in all of the three datasets as a current position of the positional module.",
"2. The method of claim 1 further comprising a step for converting the identified coordinate of the point that exist in all of the three datasets into a relational coordinate of the positioning module associated with said three beacons.",
"3. The method of claim 1, wherein the module signal is one of a laser signal and an infrared signal.",
"4. The method of claim 1, wherein the beacon signal is one of an electromagnetic signal and an acoustic signal.",
"5. The method of claim 4, wherein the beacon signal is radio frequency identification (RFID) signal that is unique to the beacon emitting said beacon signal."
],
"description_excerpt": "The invention relates to a position system and method within limited area, and more particularly relates to an indoor positioning and posture measurement system based on directional and non-directional signal scanning and measurement method.\n\nVarious known navigation and positioning systems enable people in cars, boats, aircraft, and other moveable objects to efficiently travel between given locations. Knowing a precise current geographic location or starting location and a desired destination or ending location enables navigation systems to provide customized directions that indicate which direction that moveable object should travel to reach the destination or ending location. Various known navigation systems use path-planning algorithms that combine knowledge of conduits (such as streets, bridges, or traffic rules), obstacles (such as freeway congestion), and current real-time positioning information to determine and output detailed directions.\n\nVarious known navigation systems are enhanced through graphical user interfaces that visually depict the surroundings of a current position, identify points of interest, and provide a highlight of a path of travel to reach a destination. In one known example, vehicular navigation systems use the Global Positioning System (widely known as GPS). GPS is a space-based global navigation satellite system (GNSS) that provides reliable location and time information to anyone on or near the Earth.",
"cpc": [
"G01C 21/206",
"G01C 15/002",
"G01C 21/20",
"G01S 11/16",
"G01S 19/13",
"G01S 5/0205",
"G01S 5/14",
"G01S 5/30",
"H04W 4/02"
],
"ipc": [
"G01C 21/20",
"G01S 19/13",
"H04W 4/02"
],
"inventors": [
"Yoon Phil Kim"
],
"filing_date": "2018-12-22",
"publication_date": "2022-09-20",
"grant_date": "2022-09-20",
"priority_date": "2018-12-22",
"application_number": "US-201816231444-A",
"family_id": "71101989",
"cited_by_count": 6,
"citations": [
"US5491670A",
"US9703002B1",
"US20050282558A1",
"US20130063307A1",
"US20130084889A1"
]
}
Record 1,019 of 8,000 in Patents full text (MLC-0201). Request the full dataset.