Acceleration monitoring
An acceleration monitoring apparatus for generating acceleration data about a predetermined acceleration events such as shock or damaging loads or impacts. The apparatus comprises: a first accelerometer 102 comprising a first acceleration 104 sensor and a first processor 105 together with a second a...
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creator | Jarek Rosinski Steve Lowry Krzysiek Rosinski Tomas Rosinski |
description | An acceleration monitoring apparatus for generating acceleration data about a predetermined acceleration events such as shock or damaging loads or impacts. The apparatus comprises: a first accelerometer 102 comprising a first acceleration 104 sensor and a first processor 105 together with a second accelerometer 103 comprising a second acceleration sensor 107, and a second processor 108. In use the first processor of the first accelerometer continuously samples the first sensor signal from the first acceleration sensor to generate first acceleration data at a first sampling frequency and monitors the first acceleration data to determine if it is indicative of a predetermined acceleration event. If an event occurs the first processor sends a wake-up signal to the second processor. The second processor then exits a sleep mode and controls the second accelerometer to commence sampling a second sensor signal from the second acceleration sensor to generate second acceleration data at a second sampling frequency. The first sampling frequency is lower than said second sampling frequency such that a power consumption requirement of the first accelerometer when generating the first acceleration data is lower than a power consumption requirement of the second processor and second accelerometer when generating the second acceleration data. |
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The apparatus comprises: a first accelerometer 102 comprising a first acceleration 104 sensor and a first processor 105 together with a second accelerometer 103 comprising a second acceleration sensor 107, and a second processor 108. In use the first processor of the first accelerometer continuously samples the first sensor signal from the first acceleration sensor to generate first acceleration data at a first sampling frequency and monitors the first acceleration data to determine if it is indicative of a predetermined acceleration event. If an event occurs the first processor sends a wake-up signal to the second processor. The second processor then exits a sleep mode and controls the second accelerometer to commence sampling a second sensor signal from the second acceleration sensor to generate second acceleration data at a second sampling frequency. The first sampling frequency is lower than said second sampling frequency such that a power consumption requirement of the first accelerometer when generating the first acceleration data is lower than a power consumption requirement of the second processor and second accelerometer when generating the second acceleration data.</description><language>eng</language><subject>INDICATING PRESENCE, ABSENCE, OR DIRECTION, OF MOVEMENT ; MEASUREMENT OF MECHANICAL VIBRATIONS OR ULTRASONIC, SONIC ORINFRASONIC WAVES ; MEASURING ; MEASURING FORCE, STRESS, TORQUE, WORK, MECHANICAL POWER,MECHANICAL EFFICIENCY, OR FLUID PRESSURE ; MEASURING LINEAR OR ANGULAR SPEED, ACCELERATION, DECELERATION,OR SHOCK ; PHYSICS ; TESTING</subject><creationdate>2023</creationdate><oa>free_for_read</oa><woscitedreferencessubscribed>false</woscitedreferencessubscribed></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><linktohtml>$$Uhttps://worldwide.espacenet.com/publicationDetails/biblio?FT=D&date=20230809&DB=EPODOC&CC=GB&NR=2615330A$$EHTML$$P50$$Gepo$$Hfree_for_read</linktohtml><link.rule.ids>230,308,776,881,25543,76293</link.rule.ids><linktorsrc>$$Uhttps://worldwide.espacenet.com/publicationDetails/biblio?FT=D&date=20230809&DB=EPODOC&CC=GB&NR=2615330A$$EView_record_in_European_Patent_Office$$FView_record_in_$$GEuropean_Patent_Office$$Hfree_for_read</linktorsrc></links><search><creatorcontrib>Jarek Rosinski</creatorcontrib><creatorcontrib>Steve Lowry</creatorcontrib><creatorcontrib>Krzysiek Rosinski</creatorcontrib><creatorcontrib>Tomas Rosinski</creatorcontrib><title>Acceleration monitoring</title><description>An acceleration monitoring apparatus for generating acceleration data about a predetermined acceleration events such as shock or damaging loads or impacts. The apparatus comprises: a first accelerometer 102 comprising a first acceleration 104 sensor and a first processor 105 together with a second accelerometer 103 comprising a second acceleration sensor 107, and a second processor 108. In use the first processor of the first accelerometer continuously samples the first sensor signal from the first acceleration sensor to generate first acceleration data at a first sampling frequency and monitors the first acceleration data to determine if it is indicative of a predetermined acceleration event. If an event occurs the first processor sends a wake-up signal to the second processor. The second processor then exits a sleep mode and controls the second accelerometer to commence sampling a second sensor signal from the second acceleration sensor to generate second acceleration data at a second sampling frequency. The first sampling frequency is lower than said second sampling frequency such that a power consumption requirement of the first accelerometer when generating the first acceleration data is lower than a power consumption requirement of the second processor and second accelerometer when generating the second acceleration data.</description><subject>INDICATING PRESENCE, ABSENCE, OR DIRECTION, OF MOVEMENT</subject><subject>MEASUREMENT OF MECHANICAL VIBRATIONS OR ULTRASONIC, SONIC ORINFRASONIC WAVES</subject><subject>MEASURING</subject><subject>MEASURING FORCE, STRESS, TORQUE, WORK, MECHANICAL POWER,MECHANICAL EFFICIENCY, OR FLUID PRESSURE</subject><subject>MEASURING LINEAR OR ANGULAR SPEED, ACCELERATION, DECELERATION,OR SHOCK</subject><subject>PHYSICS</subject><subject>TESTING</subject><fulltext>true</fulltext><rsrctype>patent</rsrctype><creationdate>2023</creationdate><recordtype>patent</recordtype><sourceid>EVB</sourceid><recordid>eNrjZBB3TE5OzUktSizJzM9TyM3PyyzJL8rMS-dhYE1LzClO5YXS3Azybq4hzh66qQX58anFBYnJqXmpJfHuTkZmhqbGxgaOxoRVAABhcSFC</recordid><startdate>20230809</startdate><enddate>20230809</enddate><creator>Jarek Rosinski</creator><creator>Steve Lowry</creator><creator>Krzysiek Rosinski</creator><creator>Tomas Rosinski</creator><scope>EVB</scope></search><sort><creationdate>20230809</creationdate><title>Acceleration monitoring</title><author>Jarek Rosinski ; Steve Lowry ; Krzysiek Rosinski ; Tomas Rosinski</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-epo_espacenet_GB2615330A3</frbrgroupid><rsrctype>patents</rsrctype><prefilter>patents</prefilter><language>eng</language><creationdate>2023</creationdate><topic>INDICATING PRESENCE, ABSENCE, OR DIRECTION, OF MOVEMENT</topic><topic>MEASUREMENT OF MECHANICAL VIBRATIONS OR ULTRASONIC, SONIC ORINFRASONIC WAVES</topic><topic>MEASURING</topic><topic>MEASURING FORCE, STRESS, TORQUE, WORK, MECHANICAL POWER,MECHANICAL EFFICIENCY, OR FLUID PRESSURE</topic><topic>MEASURING LINEAR OR ANGULAR SPEED, ACCELERATION, DECELERATION,OR SHOCK</topic><topic>PHYSICS</topic><topic>TESTING</topic><toplevel>online_resources</toplevel><creatorcontrib>Jarek Rosinski</creatorcontrib><creatorcontrib>Steve Lowry</creatorcontrib><creatorcontrib>Krzysiek Rosinski</creatorcontrib><creatorcontrib>Tomas Rosinski</creatorcontrib><collection>esp@cenet</collection></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext_linktorsrc</fulltext></delivery><addata><au>Jarek Rosinski</au><au>Steve Lowry</au><au>Krzysiek Rosinski</au><au>Tomas Rosinski</au><format>patent</format><genre>patent</genre><ristype>GEN</ristype><title>Acceleration monitoring</title><date>2023-08-09</date><risdate>2023</risdate><abstract>An acceleration monitoring apparatus for generating acceleration data about a predetermined acceleration events such as shock or damaging loads or impacts. The apparatus comprises: a first accelerometer 102 comprising a first acceleration 104 sensor and a first processor 105 together with a second accelerometer 103 comprising a second acceleration sensor 107, and a second processor 108. In use the first processor of the first accelerometer continuously samples the first sensor signal from the first acceleration sensor to generate first acceleration data at a first sampling frequency and monitors the first acceleration data to determine if it is indicative of a predetermined acceleration event. If an event occurs the first processor sends a wake-up signal to the second processor. The second processor then exits a sleep mode and controls the second accelerometer to commence sampling a second sensor signal from the second acceleration sensor to generate second acceleration data at a second sampling frequency. The first sampling frequency is lower than said second sampling frequency such that a power consumption requirement of the first accelerometer when generating the first acceleration data is lower than a power consumption requirement of the second processor and second accelerometer when generating the second acceleration data.</abstract><oa>free_for_read</oa></addata></record> |
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subjects | INDICATING PRESENCE, ABSENCE, OR DIRECTION, OF MOVEMENT MEASUREMENT OF MECHANICAL VIBRATIONS OR ULTRASONIC, SONIC ORINFRASONIC WAVES MEASURING MEASURING FORCE, STRESS, TORQUE, WORK, MECHANICAL POWER,MECHANICAL EFFICIENCY, OR FLUID PRESSURE MEASURING LINEAR OR ANGULAR SPEED, ACCELERATION, DECELERATION,OR SHOCK PHYSICS TESTING |
title | Acceleration monitoring |
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