Abstract:
A system and method for integrating furniture accessories and generic devices with automated furniture items is provided. In embodiments, a communication protocol enables a remote device to wirelessly control a generic device wirelessly coupled to a control component of an automated furniture item. The remote device may control features of the generic device based on wireless communication with the control component. In some embodiments, the remote device receives a user environment selection, which is communicated to the control component of the automated furniture item. The automated furniture item then communicates at least a portion of the received command to a corresponding generic device, according to the settings of the selected user environment. In further embodiments, an occupancy detection indication for the automated furniture item may result in a change in one or more settings corresponding to the user environment, as communicated to the generic device(s) by the control component.
Abstract:
A system, method, and device for automatic master control detection are provided. In embodiments, automatic master control detection may be utilized to determine a primary control device in a multi-control furniture environment, such as an automated furniture environment. In some aspects, a control device is initially programmed with a particular primary ID. Additionally, such control devices include an alternate ID that may replace the primary ID if it is determined that a conflict exists between the control device and another control device in the same network environment. In one embodiment of the invention, a control device/box/component communicates a startup query upon activation, which automatically signals to other devices in the network that it is the first control started and will retain master control status having the primary ID. Recipient control devices may process a received startup query as an indication to change their primary ID to an alternate ID.
Abstract:
A system and method for automatically pairing wireless remotes to the control components of automated furniture items is provided. In embodiments, a pairing mode selection indication is received, indicating a universal mode selection or a normal mode selection. In universal mode, the control component and the remote device are automatically paired based on commands received from the remote device. In normal mode, the control component and the remote component are automatically paired upon confirmation that the unique ID of the remote device corresponds to an ID database. Having paired the control component with the remote device, the control component may execute commands received from at least one remote device. In embodiments, the pairing method includes applying priority rules for particular remote devices. Further, the automatic pairing of remote devices may include varying levels of authorization for different users.
Abstract:
A system and method for calibrating one or more sensing features for a furniture item detection is provided. More particularly, embodiments relate to determining a first noise state associated with an environment of the furniture item based on a first measured noise received from one or more sensors associated with the furniture item. A first baseline noise level for the furniture item can be generated based on filtering the first noise state associated with the environment of the furniture item. A second noise state associated with the environment of the furniture item can be determined based on a second measured noise received from the one or more sensors associated with the furniture item. A second baseline noise level for the furniture item can be generated based on filtering the second noise state associated with the environment of the furniture item. The first baseline noise level can then be adjusted to the second baseline noise level.
Abstract:
A system and method for calibrating one or more sensing features for a furniture item detection is provided. More particularly, embodiments relate to determining a first noise state associated with an environment of the furniture item based on a first measured noise received from one or more sensors associated with the furniture item. A first baseline noise level for the furniture item can be generated based on filtering the first noise state associated with the environment of the furniture item. A second noise state associated with the environment of the furniture item can be determined based on a second measured noise received from the one or more sensors associated with the furniture item. A second baseline noise level for the furniture item can be generated based on filtering the second noise state associated with the environment of the furniture item. The first baseline noise level can then be adjusted to the second baseline noise level.
Abstract:
A system and method for incorporating occupancy-detecting technology into furniture is provided. More particularly, the invention relates to detecting occupancy in a recliner using a sinuous wire detection array incorporated into a seat. Further embodiments of the invention are directed to a system and method for incorporating capacitance detection technology with one or more conductive features of a recliner mechanism. In some aspects, a sensor is provided based on coupling one or more conductive features to a control component of the capacitance detector control component. A controller may determine the corresponding response based on occupancy detection and/or presence detection. A processor may receive information regarding changes in capacitance and determines when a change in voltage satisfies a threshold. Based on a determination of occupancy and/or presence, a variety of corresponding features of the adjustable recliner may be activated.
Abstract:
A system and method for incorporating occupancy-detecting technology into furniture is provided. More particularly, the invention relates to detecting occupancy using a detection pad coupled a portion of a bed. The detection pad may include an aluminized polymer material, a metalized and/or conductive fabric, an aluminum sheet, a metal screen, an aluminum tape, a wire grid, or other metalized material or fabric. A controller determines the corresponding response based on single-occupancy or dual-occupancy detection by one or more detection pads. A processor receives information regarding changes in capacitance and determines when a change in voltage satisfies a threshold. Based on a determination of occupancy, or lack thereof, a variety of corresponding features of the adjustable bed may be activated.