Abstract:
This disclosure provides a method and system of providing a supplemental user interface (UI) operatively associated with a device, such as a multifunctional device (MFD) or multifunctional printer (MFP). According to an exemplary embodiment of this disclosure, an accessibility UI is provided by a portable computer device, e.g., off-the-shelf tablet, where the table includes a container application including a collection of walk-up user applications to operate the MFD, a set of tablet user environment' configuration applications and a set of helper applications that operate in the background and/or provide transitory screens, such as authentication for operating the MFD.
Abstract:
A method for establishing a network connection between a mobile electronic device and a target network device includes establishing a short-range communications link between the mobile electronic device and the target network device. The method may also include, by a processor, executing an application that causes the processor to receive network device information from the target network device, via the short-range communications link, use the identifier associated with the target network device to identify a network to which the target network device is connected, use a transmitter component of the mobile electronic device to establish the network connection between the mobile electronic device and the target network device, via the identified network, and cause the transmitter component to send a communication to the target network device, via the identified network. The network device information comprises an identifier associated with the target network device.
Abstract:
According to embodiments illustrated herein there is provided a method for controlling an electronic device. The method includes detecting, in a mobile device, a contact with the electronic device at a predetermined reference location on the electronic device. The method further includes tracking a movement of the mobile device from the predetermined reference location to a second location on the electronic device, wherein the second location corresponds to a first component of the electronic device. Additionally, the method includes receiving an input from a user to control one or more functionalities of the first component.
Abstract:
Systems and methods for verifying physical proximity to a network device are provided. The method includes acquiring a tag identifier from a tag fixed in, on, or proximal to a network device, using a computing device. The tag is configured to be read and written to by electronic communication with the computing device, when the computing device is disposed in proximity to the tag. The method further includes transmitting data indicative of the tag identifier to a server, and receiving an authorization confirmation from the server. The method also includes rewriting the tag so as to replace the tag identifier with a new tag identifier, using the computing device, and performing one or more operations with the network device after receiving the authorization.
Abstract:
Methods and systems for transparently extending a multi-function device onto a mobile communications device. The mobile communications device and the multi-function device can be securely connected utilizing a random code displayed on a user interface of the MFD. An extensibility application associated with the MFD can be transparently combined with an execution environment of the mobile communications device to offer a number of services. A hardware and software resource of the MFD and the mobile communications device can be combined to perform composite operations involving data from both devices. The connection can expire after a period of inactivity and require physical proximity to be established to prevent unwanted access to the MFD. Such an approach establishes a shared extensibility framework for the multifunction device and the mobile communications device as a single execution environment.
Abstract:
A method and system of configuring a network using a network application of a mobile device including detecting a gesture sequence that comprises at least one gesture, in response to a user performed action. The detected gesture sequence may be indicative of network configuration rules associated with at least one network device. The method may further include receiving and storing network access credentials, and accessing a network configuration database. The network configuration database may comprise a plurality of gesture sequences and a plurality of associated tasks. The method may also include determining a match for the detected gesture sequence among the plurality of gesture sequences; determining an associated task based on the match; and performing the associated task to achieve the network configuration action. The associated task may include a network configuration action based on the network configuration rules associated with at least one network device.
Abstract:
In a system for detecting location of an object inside of a building, an image capture device of a mobile electronic device captures an image of a boundary of a room in which the portable electronic device is positioned. The system extracts features of a boundary (ceiling, wall or floor) in the image to determine whether the mobile device is in a known location. When the system identifies a known location, it will take an action that provides the portable electronic device with additional functionality at the identified known location. Such functionality may include connecting to a wireless network or communicating with a stationary device at the known location.
Abstract:
A method, non-transitory computer readable medium and apparatus for analyzing operational sensor data of a device collected by a mobile endpoint device operating with the device are disclosed. For example, the method includes receiving the operational sensor data, a time stamp, a location of the device and a device identification (ID) from the mobile endpoint device, wherein the operational sensor data is collected by the mobile endpoint device from the device when the mobile endpoint device initiates a communication session with the device and transmitting the operational sensor data to a management service, wherein the operational sensor data is analyzed to determine a cause of a failure of the device when the device fails.
Abstract:
A method and system for pairing devices comprises transmitting a plurality of communication signals from each of a plurality of devices and setting an initial threshold vector of signal strengths as a current threshold vector of signal strengths for at least one target device selected from among the plurality of devices. The embodiment includes pairing at least one client device with the at least one target device when a measured vector of signal strengths exceeds the current threshold vector of signal strengths and adjusting the current threshold vector of signal strengths according to the pairing between the client device and the target device, thereby adaptively adjusting the current threshold vector of signal strengths.
Abstract:
A method and system of configuring a network using a network application of a mobile device including detecting a gesture sequence that comprises at least one gesture, in response to a user performed action. The detected gesture sequence may be indicative of network configuration rules associated with at least one network device. The method may further include receiving and storing network access credentials, and accessing a network configuration database. The network configuration database may comprise a plurality of gesture sequences and a plurality of associated tasks. The method may also include determining a match for the detected gesture sequence among the plurality of gesture sequences; determining an associated task based on the match; and performing the associated task to achieve the network configuration action. The associated task may include a network configuration action based on the network configuration rules associated with at least one network device.