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refinement…","opengraphPublishedTime":"2023-07-25T04:25:22+00:00","opengraphModifiedTime":"","opengraphTitle":"Invention for Gps accuracy refinement using external sensors - Inventiv.org","opengraphType":"article","opengraphImage":{"sourceUrl":"https://wp.inventiv.org/wp-content/uploads/2023/07/file-2927208649748409650.png"}},"date":"July 25, 2023","content":"<h2 class=\"abpost-category\" style=\"padding-left:50px;padding-top:15px\">Invented by Subramaniam Venkatraman, Heiko Gernot Albert Panther, Shelten Gee Jao Yuen, Fitbit LLC</h2>\n<div class=\"contact-us-holder\"></div>\n<div class=\"af-artical-patent\">\n                The market for GPS accuracy refinement using external sensors has seen significant growth in recent years. As technology continues to advance, the demand for precise and reliable GPS data has become increasingly important in various industries such as transportation, agriculture, and surveying.</p>\n<p>GPS, or Global Positioning System, is a satellite-based navigation system that provides location and timing information anywhere on Earth. While GPS technology has revolutionized the way we navigate and track objects, it is not without its limitations. Factors such as signal interference, atmospheric conditions, and physical obstructions can affect the accuracy of GPS readings.</p>\n<p>To overcome these limitations, many companies and researchers have developed external sensors that can be used in conjunction with GPS to refine its accuracy. These sensors, which can include accelerometers, gyroscopes, magnetometers, and barometers, provide additional data that can be used to improve the positioning accuracy of GPS.</p>\n<p>One of the key applications of GPS accuracy refinement using external sensors is in the transportation industry. Accurate GPS data is crucial for autonomous vehicles, as they rely on precise positioning information to navigate safely and efficiently. By integrating external sensors, such as inertial measurement units (IMUs), with GPS, autonomous vehicles can obtain more accurate and reliable positioning data, reducing the risk of accidents and improving overall performance.</p>\n<p>In the agriculture sector, GPS accuracy refinement using external sensors has also gained traction. Farmers use GPS technology to guide their machinery during planting, spraying, and harvesting operations. However, variations in GPS accuracy can lead to inefficiencies and yield losses. By incorporating external sensors, such as soil moisture sensors or weather stations, farmers can enhance the accuracy of their GPS systems, allowing for more precise application of fertilizers, pesticides, and irrigation.</p>\n<p>Furthermore, the use of external sensors for GPS accuracy refinement is also prevalent in the field of surveying and mapping. Surveyors rely on accurate GPS data to create precise maps and measure distances. By integrating external sensors, such as tilt sensors or inclinometers, with GPS receivers, surveyors can compensate for variations in terrain and obtain more accurate measurements.</p>\n<p>The market for GPS accuracy refinement using external sensors is expected to continue growing in the coming years. As industries become more reliant on precise positioning data, the demand for solutions that can enhance GPS accuracy will increase. Additionally, advancements in sensor technology, such as miniaturization and improved accuracy, will further drive the adoption of external sensors for GPS refinement.</p>\n<p>However, challenges still exist in the widespread adoption of external sensors for GPS accuracy refinement. Cost, compatibility, and integration issues can hinder the implementation of these solutions. Additionally, the need for standardization and interoperability among different sensor types and GPS receivers is crucial to ensure seamless integration and optimal performance.</p>\n<p>In conclusion, the market for GPS accuracy refinement using external sensors is a rapidly growing industry. The demand for precise and reliable GPS data in various sectors has driven the development and adoption of external sensors that can enhance GPS accuracy. As technology continues to advance, the integration of external sensors with GPS systems will play a crucial role in improving navigation, efficiency, and safety across industries.\n                </p></div>\n<p>\n                <img loading=\"lazy\" class=\"alignnone size-medium wp-image-10293\" src=\"https://inventivs.net/wp-content/uploads/2023/07/file-2927208649748409650-1024x682.png\" alt=\"\" width=\"1024\" height=\"682\" data-mce-src=\"https://inventivs.net/wp-content/uploads/2023/07/file-2927208649748409650-1024x682.png\" data-mce-selected=\"1\" srcset=\"https://wp.inventiv.org/wp-content/uploads/2023/07/file-2927208649748409650-1024x682.png 1024w, https://wp.inventiv.org/wp-content/uploads/2023/07/file-2927208649748409650-300x200.png 300w, https://wp.inventiv.org/wp-content/uploads/2023/07/file-2927208649748409650-768x512.png 768w, https://wp.inventiv.org/wp-content/uploads/2023/07/file-2927208649748409650-1536x1023.png 1536w, https://wp.inventiv.org/wp-content/uploads/2023/07/file-2927208649748409650-2048x1365.png 2048w\" sizes=\"(max-width: 1024px) 100vw, 1024px\" />\n              </p>\n<h2>The Fitbit LLC invention works as follows</h2>\n<p>                Herein, &#8220;Biometric Monitoring Devices, including various technologies which may be implemented in these devices, are discussed. Also, methods for improving GPS speed and distance measurement based on the step counts of a biometric device are described. Such techniques may, in some implementations, involve blending two independently-measured data streams of raw distance traveled?one based on inter-coordinate GPS coordinate distances and one based on step count and stride length?using a Kalman filter to provide an enhanced-accuracy measurement of distance or speed traveled. Other implementations smooth distances or speed calculated using inter-coordinate GPS distances with a smoothing coefficient that is proportional the variance of measured step count.</p>\n<p>\n                <img loading=\"lazy\" class=\"alignnone size-medium wp-image-10294\" src=\"https://inventivs.net/wp-content/uploads/2023/07/file-3795367144791381184-709x1024.png\" alt=\"\" width=\"709\" height=\"1024\" data-mce-src=\"https://inventivs.net/wp-content/uploads/2023/07/file-3795367144791381184-709x1024.png\" data-mce-selected=\"1\" srcset=\"https://wp.inventiv.org/wp-content/uploads/2023/07/file-3795367144791381184-709x1024.png 709w, https://wp.inventiv.org/wp-content/uploads/2023/07/file-3795367144791381184-208x300.png 208w, https://wp.inventiv.org/wp-content/uploads/2023/07/file-3795367144791381184-768x1110.png 768w, https://wp.inventiv.org/wp-content/uploads/2023/07/file-3795367144791381184-1063x1536.png 1063w, https://wp.inventiv.org/wp-content/uploads/2023/07/file-3795367144791381184-1418x2048.png 1418w, https://wp.inventiv.org/wp-content/uploads/2023/07/file-3795367144791381184.png 1754w\" sizes=\"(max-width: 709px) 100vw, 709px\" />\n              </p>\n<div class=\"contact-us-holder\"></div>\n<h3>Background for Gps accuracy refinement using external sensors</h3>\n<p style=\"padding-top:15px\">BRIEF DESCRIPTION DES DRAWINGS</p>\n<p style=\"padding-top:15px\">Physiological Sensors</p>\n<p style=\"padding-top:15px\">Motion Artifact Suppression in Heart Rate Sensors</p>\n<p style=\"padding-top:15px\">Ambient light and skin color</p>\n<p style=\"padding-top:15px\">Heart Rate Estimate Improvement Using Heuristics</p>\n<p style=\"padding-top:15px\">HR Quality Metric</p>\n<p style=\"padding-top:15px\">Sedentary, sleep, and active classified metrics</p>\n<p style=\"padding-top:15px\">Sleep Monitoring</p>\n<p style=\"padding-top:15px\">Sensor-based Standby Mode</p>\n<p style=\"padding-top:15px\">Optical Sensor(s)</p>\n<p>\n                <img loading=\"lazy\" class=\"alignnone size-medium wp-image-10295\" src=\"https://inventivs.net/wp-content/uploads/2023/07/file-17235028811005278069-680x1024.png\" alt=\"\" width=\"680\" height=\"1024\" data-mce-src=\"https://inventivs.net/wp-content/uploads/2023/07/file-17235028811005278069-680x1024.png\" data-mce-selected=\"1\" srcset=\"https://wp.inventiv.org/wp-content/uploads/2023/07/file-17235028811005278069-680x1024.png 680w, https://wp.inventiv.org/wp-content/uploads/2023/07/file-17235028811005278069-199x300.png 199w, https://wp.inventiv.org/wp-content/uploads/2023/07/file-17235028811005278069-768x1156.png 768w, https://wp.inventiv.org/wp-content/uploads/2023/07/file-17235028811005278069-1020x1536.png 1020w, https://wp.inventiv.org/wp-content/uploads/2023/07/file-17235028811005278069-1360x2048.png 1360w, https://wp.inventiv.org/wp-content/uploads/2023/07/file-17235028811005278069.png 1881w\" sizes=\"(max-width: 680px) 100vw, 680px\" />\n              </p>\n<p style=\"padding-top:15px\">PPG DC Offset Removal Techniques</p>\n<p style=\"padding-top:15px\">Circuits to Perform PPG</p>\n<p style=\"padding-top:15px\">Biometric Feedback</p>\n<p style=\"padding-top:15px\">Environmental Sensors</p>\n<p style=\"padding-top:15px\">Sensors Integration/Signal Processing</p>\n<p style=\"padding-top:15px\">Processing Task Delegation&#8221;.</p>\n<p style=\"padding-top:15px\">Integration Systems in a Biometric Monitor Device</p>\n<p style=\"padding-top:15px\">Methods for Wearing the Device&#8221;.</p>\n<p style=\"padding-top:15px\">Alarms</p>\n<p style=\"padding-top:15px\">Wireless Connectivity and Data Transmission</p>\n<p>\n                <img loading=\"lazy\" class=\"alignnone size-medium wp-image-10296\" src=\"https://inventivs.net/wp-content/uploads/2023/07/file-3013179942713812785-783x1024.png\" alt=\"\" width=\"783\" height=\"1024\" data-mce-src=\"https://inventivs.net/wp-content/uploads/2023/07/file-3013179942713812785-783x1024.png\" data-mce-selected=\"1\" srcset=\"https://wp.inventiv.org/wp-content/uploads/2023/07/file-3013179942713812785-783x1024.png 783w, https://wp.inventiv.org/wp-content/uploads/2023/07/file-3013179942713812785-229x300.png 229w, https://wp.inventiv.org/wp-content/uploads/2023/07/file-3013179942713812785-768x1005.png 768w, https://wp.inventiv.org/wp-content/uploads/2023/07/file-3013179942713812785-1174x1536.png 1174w, https://wp.inventiv.org/wp-content/uploads/2023/07/file-3013179942713812785-1565x2048.png 1565w\" sizes=\"(max-width: 783px) 100vw, 783px\" />\n              </p>\n<p style=\"padding-top:15px\">Charge and Data Transmission</p>\n<p>\n                <img loading=\"lazy\" class=\"alignnone size-medium wp-image-10297\" src=\"https://inventivs.net/wp-content/uploads/2023/07/file-17987315381430616386-757x1024.png\" alt=\"\" width=\"757\" height=\"1024\" data-mce-src=\"https://inventivs.net/wp-content/uploads/2023/07/file-17987315381430616386-757x1024.png\" data-mce-selected=\"1\" srcset=\"https://wp.inventiv.org/wp-content/uploads/2023/07/file-17987315381430616386-757x1024.png 757w, https://wp.inventiv.org/wp-content/uploads/2023/07/file-17987315381430616386-222x300.png 222w, https://wp.inventiv.org/wp-content/uploads/2023/07/file-17987315381430616386-768x1039.png 768w, https://wp.inventiv.org/wp-content/uploads/2023/07/file-17987315381430616386-1136x1536.png 1136w, https://wp.inventiv.org/wp-content/uploads/2023/07/file-17987315381430616386-1514x2048.png 1514w\" sizes=\"(max-width: 757px) 100vw, 757px\" />\n              </p>\n<p>          <a href=\"https://patents.google.com/patent/US20190269353A1/en\" target=\"_blank\" rel=\"noopener\">Click here</a> to view the patent on Google Patents.</p>\n","id":"cG9zdDoxMDI5OQ==","uri":"/invention-for-gps-accuracy-refinement-using-external-sensors-us20190269353a1/","title":"Invention for Gps accuracy refinement using external sensors","tags":{"nodes":[{"name":"Patent Review"}]},"categories":{"nodes":[{"name":"Electronics"}]},"featuredImage":{"node":{"mediaItemUrl":"https://wp.inventiv.org/wp-content/uploads/2023/07/file-2927208649748409650.png"}}}},"pageContext":{"slug":"invention-for-gps-accuracy-refinement-using-external-sensors-us20190269353a1","neId":"10299","categories":["3D Printing","Animal Health","Apple","Artificial Intelligence","Autonomous Vehicles","Biopharmaceuticals","Blockchain Fintech","Cannabis Patents and Trademarks","Chemical Products","Communications","Consumer Products","Digital Healthcare","Electronics","Food Science Packaging","Industrial Products","Infectious Diseases","Internet","Medical Device","Metaverse","Nanotechnology","Prescription &amp; OTC Drugs","Software","Start Up","Therapeutic Antibodies","uncategorized"],"tags":["Alphabet","Amazon","Facebook/Meta","Microsoft","Patent Review","Samsung"],"siteUrl":"https://inventivs.net"}},
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