Wireless key management for authentication
US-2016036594-A1 · Feb 4, 2016 · US
US9530295B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9530295-B2 |
| Application number | US-201514622654-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 13, 2015 |
| Priority date | Aug 13, 2014 |
| Publication date | Dec 27, 2016 |
| Grant date | Dec 27, 2016 |
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.
A wireless access control system includes a mobile device for accessing a lock. A mobile device controller generates a signal configured to be transmitted to an intelligent lock system. The intelligent lock system includes a lock, a processor with a memory, one or more wireless communication devices coupled to a circuit and one or more motion transfer device coupled to a drive shaft, the lock receiving the signal, and enabling a change of a state of the lock between locked and unlocked. A geo-positioning system sensor determines a geographic location of the mobile device, the controller determines whether or not the geographic position is within a geo-fence for the lock.
Opening claim text (preview).
What is claimed is: 1. A wireless access control system including a mobile device for accessing a lock comprising: a mobile device with a mobile device controller for generating a signal configured to be transmitted to an intelligent lock system, the intelligent lock system including a lock, a processor with a memory, one or more wireless communication devices coupled to a circuit and one or more motion transfer devices coupled to a lock system that includes a position sensor configured to be coupled to a drive shaft of the lock system, the position sensor sensing position of the drive shaft to assist in locking and unlocking a lock of a lock apparatus, the lock system receiving the signal, and enabling a change of a state of the lock between locked and unlocked, the one or more wireless communication devices configured to be in communication with the mobile device for locking and unlocking of the lock; and a geo-positioning system sensor for determining a geographic location of the mobile device, the controller determining whether or not the geographic position is within a geo-fence for the lock. 2. A wireless access control system including a mobile device for controlling a lock comprising: a mobile device with a mobile device controller for generating a signal; an intelligent lock system, the intelligent lock system including a lock, a processor with a memory, one or more wireless communication devices coupled to a circuit and one or more motion transfer device coupled to a lock system that includes a position sensor configured to be coupled to a drive shaft of the lock system, the position sensor sensing position of the drive shaft to assist in locking and unlocking a lock of a lock apparatus, the lock system receiving the signal, and enabling a change of a state of the lock between locked and unlocked, the mobile device controller generating the signal for changing a state of the lock between locked and unlocked, the one or more wireless communication devices configured to be in communication with the mobile device for locking and unlocking of the lock; and a memory that stores past transaction information, the controller accessing a past transaction information to recognize patterns, and outputting the signal to the lock when a pattern of data presently exhibited at the mobile device corresponds to a pattern of past transaction information stored in the memory corresponding to a past event in which a control signal is sent to a lock. 3. The wireless access control system of claim 2 , wherein mobile device is configured to time stamp a time of day of the transmission of a successful signal to the lock; and stores the time stamp of the time of day of a successful transmission of the signal in the memory, the mobile device controller configured to compare a time of day of a previous successful signal to a current time of day and increasing the broadcast rate when the current time of day matches the stored time of day. 4. The wireless access control system of claim 2 , further comprising: a geo-positioning system sensor for determining a geolocation of the mobile device; and wherein the location of the lock being stored in the memory, and the pattern including a geo-location of the lock, the mobile device controller comparing a current geolocation to a stored geolocation, and increasing the rate at which the signal is broadcast when the current geolocation substantially matches the stored geolocation. 5. A wireless control system including a mobile device for accessing a lock of a lock system, comprising: a mobile device controller for generating a signal to be transmitted to the lock system that includes a position sensor configured to be coupled to a drive shaft of the lock system, the lock system including one or more wireless communication devices, the position sensor sensing position of the drive shaft to assist in locking and unlocking a lock of a lock apparatus, the lock system configured to change the lock for changing a state of the lock between locked and unlocked, the one or more wireless communication devices configured to be in communication with the mobile device for locking and unlocking of the lock; an accelerometer for outputting an acceleration signal to the controller each time the accelerometer senses an acceleration; and wherein the mobile device controller is configured to output the signal in response to the acceleration signal, and the lock system includes a processor with a memory, one or more wireless communication devices coupled to a circuit and the drive shaft. 6. The wireless access control system of claim 5 , further comprising: a real time clock monitored by the controller for determining an elapsed time, the mobile device controller terminating a transmission of the signal at an end of a predetermined elapsed time. 7. A wireless access control system including a mobile device for accessing a lock of a lock system, comprising: a mobile device controller configured to generate a signal to be transmitted to the lock for changing a state of the lock between locked and unlocked; a lock system that includes an accelerometer configured to be coupled to a drive shaft of the lock system, the accelerometer sensing position of the drive shaft to assist in locking and unlocking a lock of a lock apparatus, the accelerometer outputting an acceleration signal to the mobile device controller each time the accelerometer senses an acceleration; and wherein the mobile device controller is configured to output the signal at a first rate, and in response to the acceleration signal outputs the signal at a second rate, the second rate being higher than the first rate, the lock system including a processor with a memory, one or more wireless communication devices coupled to a circuit and one or more motion transfer devices coupled to a drive shaft, the one or more wireless communication devices configured to be in communication with the mobile device for locking and unlocking of the lock. 8. The wireless access control system of claim 7 , further comprising: a real time clock monitored by the mobile device controller for determining an elapsed time, the controller terminating the transmission of the signal at the end of a predetermined elapsed time. 9. A method for accessing a lock of a lock system, comprising: a mobile device configured to produce an access signal to the lock, the intelligent lock system including a processor with a memory, one or more wireless communication devices coupled to a circuit and one or more motion transfer devices coupled to a drive shaft of a lock system that includes a position sensor configured to be coupled to the drive shaft of the lock system, the position sensor sensing position of the drive shaft to assist in locking and unlocking a lock of a lock apparatus, the one or more wireless communication devices configured to be in communication with the mobile device for locking and unlocking of the lock; sending by the mobile device a command signal to the lock to check the state of the lock; determining a state of the lock at the lock system; and sending a state of the lock information to the mobile device. 10. The method for accessing a lock of claim 9 , further comprising: sending by the mobile device a unique identifier to the lock; determining at the lock system whether the unique identifier of the mobile device corresponds to an authorized user; and only sending the state of the lock information when the unique identifier corresponds to an authorized user. 11. The method of claim 10 , further comprising: sending by the mobile device a change lock state command to the lock system; the lock system changing a state of the lock in respon
Wireless systems, other than telephone systems, used to communicate with a camera · CPC title
Electricity · mapped topic
using biometrical features, e.g. fingerprint, retina-scan (cryptographic mechanisms or cryptographic arrangements for entity authentication using biological data H04L9/3231) · CPC title
Physics · mapped topic
Physics · mapped topic
Related publications grouped by family.
Answers are generated from the same data shown on this page.