A system can include a first electrical device disposed within a volume of space. The system can also include a user system disposed in the volume of space. The user system can broadcast a first initiation signal in the volume of space. The user system can also receive, in response to the first initiation signal, a first response signal from the first transceiver of the first electrical device, where the first response signal includes a first identification of the first electrical device. The user system can further measure at least one parameter associated with the first response signal. The user system can also determine whether the at least one parameter is within a range of acceptable values. The user system can further assign the first electrical device to a first group when the at least one parameter is determined to be within a range of acceptable values.
Wireless Organization Of Electrical Devices By Sensor Manipulation
A system can include a first electrical device having a first sensor device, where the first sensor device is configured to measure a first parameter used in operating the first electrical device, where the first sensor device is further configured to detect a first condition that is unrelated to operating the first electrical device, where the first condition is created by a trigger device controlled by a user, where the first sensor device, upon detecting the first condition, broadcasts a first communication that includes a first identification of the first sensor device. The system can also include a gateway communicably coupled to the first electrical device, where the gateway receives the first communication from the first electrical device, where the gateway assigns the first electrical device to a first group based on the first identification of the first sensor device.
Frame Stitching And Other Functions Using Multiple Cameras
- Dublin 4, IE Dominic Pritham - Atlanta GA, US Ameya Ainapure - Atlanta GA, US Bruce Douglas - Fayetteville GA, US
International Classification:
H04N 5/262 H04N 13/239 G06T 7/292
Abstract:
A system disposed in a volume of space can include a first camera disposed in the volume of space, where the first camera captures a first image of a first portion of the volume of space. The system can also include a second camera disposed in the volume of space, where the second camera captures a second image of a second portion of the volume of space. The system can further include a controller communicably coupled to the first camera and the second camera. The controller can receive the first image from the first camera and the second image from the second camera. The controller can also generate a resulting image by combining the first image and the second image. The controller can further perform an action using the resulting image.
Simultaneous Control Of A Subnet Of Nodes In A Wireless Network
- Dublin, IE Dominic Pritham - Newnan GA, US Ameya Ainapure - Atlanta GA, US
International Classification:
H04W 4/06 H04B 7/15 H04W 12/00
Abstract:
A system for simultaneous control of a subset of nodes in a wireless network includes a network controller and a plurality of nodes that are communicatively coupled to the network controller. The network controller transmits a custom Zigbee unicast message to a node of the subset of nodes that is assigned as a point guard node upon receiving an instruction to control one or more nodes of the subset of nodes. The point guard node receives the custom Zigbee unicast message and generates an InterPAN broadcast message based on a payload of the custom Zigbee unicast message. The point guard node broadcasts the InterPAN broadcast message as a one hop broadcast message to all the nodes in the radio range of the point guard node. The receiving nodes whose identifiers are present in the payload of the InterPAN broadcast message act on the instruction to change a status thereof.
1693 Hosea L Williams Dr southeast, Atlanta, GA 30317
Industry:
Computer Software
Work:
Eaton - Lighting
Lead Firmware Engineer
Qualcomm Dec 2013 - May 2016
Corebsp Peripherals Software Development
Qualcomm Jul 2012 - Dec 2013
Multimedia Software Applications Engineer-Camera Subsystem
Madison Research Technologies Mar 2011 - Jul 2012
Embedded Software Engineer
Dynamics Jul 2010 - Mar 2011
Embedded Systems Engineer
Education:
Syracuse University 2008 - 2010
Master of Science, Masters, Electrical Engineering, Electronics Engineering
University of Wisconsin - Milwaukee 2008 - 2008
Srm University 2004 - 2008
Thai Sikh International School
Skills:
Embedded Systems Firmware Microcontrollers Software Development C Debugging Embedded Software Rtos C++ Msp430 Software Design Visual Studio Zigbee Multithreading Computer Vision Xcode Sqlite Restful Webservices Python Kernel Drivers Iar Embedded Workbench Opencv Deep Learning Machine Learning Windows Driver Development
Dec 2013 to 2000 Software EngineerQualcomm Technologies, Inc San Diego, CA Jul 2012 to Dec 2013 Software EngineerMadison Research Technologies Madison, WI Mar 2011 to Jul 2012 Embedded Software Engineer
Education:
Syracuse University Aug 2008 to Aug 2010 MS in Electrical EngineeringSRM University Aug 2004 to May 2008 BS in Electrical Engineering
Multimedia Software Applications Engineer-Camera Subsystem At Qualcomm