This disclosure relates generally to appliances, and more particularly, to appliances that trigger applications on consumer devices based on user proximity to appliance background.
Conventional appliances have user interfaces that allow a user to control, operate, etc. an appliances. In some instances a user may use a mobile consumer device to control, operate, etc. an appliance.
Conventional appliances do not respond or adjust their behavior bashed on how close a user is to the appliance. In stark contrast to conventional appliances, the example appliances disclosed herein respond to a user based on how close the user is to the appliance. The appliance may, additionally or alternatively, utilize user identification information to determine its response. For example, when the appliance senses that the user is approaching or leaving, or a suite of appliances locates the user, its location data will be sent by the appliance to an application server implemented remotely from the appliances. The application server responds to the proximity information by triggering an application or user interface, e.g., a web browser, on a consumer user device associated with the user. In some examples, the application or user interface is trigger on another person's consumer device. For example, a parent's consumer device may be triggered when a child approaches an appliance.
As used herein the terms “remote,” “remotely,” or equivalents or permutations thereof mean that first and second remote function are implemented by, at, or in separate or different devices, servers, appliances, etc. separated by any distance. Remotely does not require a particular minimum separation distance. For examples, functions may be implement by different devices at the same geographic location (e.g., within a residence or place of business).
Example consumer user devices 102 include, but are not limited to, a personal computer (PC), a workstation, a residential gateway, a set-top box, a smart phone, a laptop, a netbook, a tablet PC, a game console, a server, and/or any other type of computing device containing a processor.
Example appliances 104 include, but are not limited to, a stove, a microwave, a cook top, a refrigerator, an oven, a washing machine, a dryer, a refresher, a dishwasher, or any other standalone or portable appliance, such as but not limited to, a coffee maker, a slow cooker, a toaster, a blender, a mixer, a food processor, etc.
In response to the detected proximity of a user 114 to the appliance 104, the appliance 104 sends appliance state information and user proximity information to the application server 106. As used herein, detected proximity information includes a detection of the user 114 moving toward and/or away from the appliance 104. To detect user proximity and/or identity, the example appliance 104 implements any number and/or type(s) device(s), circuit(s), algorithm(s), etc. 116 including, but not limited to near field communication (NFC), Wi-Fi, camera, infrared (IR), etc. In some examples, the appliance 104 may not implement proximity detection means, instead relying on another appliance. Additionally or alternatively, two or more appliances may cooperate and/or share data to detect proximity and/or identification information.
An example manner of implementing or carrying out the example consumer user device 102, the appliance 104, the example application server 106, and/or the example use cases of
The processor platform 200 of the instant example includes at least one programmable processor 202. For example, the processor 202 can be implemented by one or more Atmel®, Intel®, AMD®, and/or ARM® microprocessors. Of course, other processors from other processor families and/or manufacturers are also appropriate. The processor 202 executes coded instructions 204 present in main memory of the processor 202 (e.g., within a volatile memory 206 and/or a non-volatile memory 208), stored on a storage device 212, stored on a removable computer-readable storage medium 214 such as a CD or DVD 214, a FLASH drive 216, etc.
The processor 202 is in communication with the main memory including the non-volatile memory 208 and the volatile memory 206, and the storage devices 214, 216 via a bus 218. The volatile memory 206 may be implemented by, for example, synchronous dynamic random access memory (SDRAM), dynamic random access memory (DRAM), RAMBUS® dynamic random access memory (RDRAM) and/or any other type of RAM device(s). The non-volatile memory 208 may be implemented by, for example, flash memory(-ies), flash memory device(s) and/or any other desired type of memory device(s). Access to the memory 206 and 208 may be controlled by a memory controller.
The processor platform 200 also includes an interface circuit 220. Any type of interface standard, such as an external memory interface, serial port, general-purpose input/output, as an Ethernet interface, a universal serial bus (USB), and/or a peripheral component interface (PCI) express interface, etc, may implement the interface circuit 220.
One or more input devices 222 are connected to the interface circuit 220. The input device(s) 220 permit a user to enter data and commands into the processor 202. The input device(s) 220 can be implemented by, for example, knobs, a keyboard, a mouse, a touch screen, a track-pad, a trackball, an isopoint, proximity sensor, and/or a voice recognition system.
One or more output devices 224 are also connected to the interface circuit 220. The output devices 224 can be implemented, for example, by display devices (e.g., a display, indicators, light emitting diodes, and/or speakers.
The interface circuit 220 may also includes one or more communication device(s) 226 and/or antennae 228 such as a network interface card to facilitate exchange of data with other appliances, devices, computers, nodes and/or routers of a network.
Example use cases illustrated in the form of UML interaction diagrams that may be implemented and/or carried out by the user 114, the consumer user device 102, the appliance 104, and the remote appliance server 106 are shown in
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In this specification and the appended claims, the singular forms “a,” “an” and “the” do not exclude the plural reference unless the context clearly dictates otherwise. Further, conjunctions such as “and,” “or,” and “and/or” are inclusive unless the context clearly dictates otherwise. For example, “A and/or B” includes A alone, B alone, and A with B.
No item or component is essential to the practice of the embodiments disclosed herein unless the element is specifically described as “essential” or “critical”.
Although certain example methods, apparatus and articles of manufacture have been described herein, the scope of coverage of this patent is not limited thereto. On the contrary, this patent covers all methods, apparatus and articles of manufacture fairly falling within the scope of the claims of this patent.
Number | Name | Date | Kind |
---|---|---|---|
8489112 | Roeding et al. | Jul 2013 | B2 |
8694024 | Ng et al. | Apr 2014 | B2 |
8706159 | Ng et al. | Apr 2014 | B2 |
8718620 | Rosenblatt | May 2014 | B2 |
8938558 | Pahud | Jan 2015 | B2 |
8942694 | Woo | Jan 2015 | B2 |
8952779 | Sugaya | Feb 2015 | B2 |
8995981 | Aginsky | Mar 2015 | B1 |
9123234 | Jung | Sep 2015 | B2 |
20050138077 | Michael et al. | Jun 2005 | A1 |
20120146918 | Kreiner | Jun 2012 | A1 |
20120178431 | Gold | Jul 2012 | A1 |
20120303137 | Schoeller | Nov 2012 | A1 |
20130052946 | Chatterjee et al. | Feb 2013 | A1 |
20130214935 | Kim et al. | Aug 2013 | A1 |
20140028445 | Wild | Jan 2014 | A1 |
20140070927 | Broniak | Mar 2014 | A1 |
Number | Date | Country |
---|---|---|
100400459 | Oct 2013 | KR |
Number | Date | Country | |
---|---|---|---|
20160174035 A1 | Jun 2016 | US |