Abstract:
A method and system to improve sleep quality. The system comprises a controller to control a temperature-controlled sleep surface, a temperature of the temperature controlled sleep surface adjusted, based on the user's sleep state and sleep quality, to improve the user's sleep quality. In one embodiment, the user's sleep state and sleep quality is determined based on data from monitoring system.
Abstract:
A sleep sensor system comprising a sensor to collect movement data from a sleeper on an adjustable bed, a receiver to send movement data from the sensor to a server. The sleep sensor system further comprising the receiver to receive command data from the server, a bed controller to transmit bed movement command data to the adjustable bed, to cause the adjustable bed to alter one or more settings, and an IoT controller to transmit IoT command data to an IoT device to cause the IoT device to take an action.
Abstract:
A method of managing a parking system comprising receiving a request for a parking location from a user of a mobile device, selecting an available spot, and guiding the user to the available spot. The method in on embodiment further comprises marking the parking location. In one embodiment, the user may also be given guidance back to the marked parking location.
Abstract:
A method or apparatus to provide a display of friends in a local area to a user, receive a request to meet, and calculate an optimal location for a meeting is described. In one embodiment, the system provides guidance to the user to the optimal location.
Abstract:
A method and apparatus to provide a global positioning system receiver is described. The Personal navigation system includes at least one motion sensor, the motion sensor capable of identifying a user activity, and distinguishing between walking and driving, or other manual v. mechanical locomotion. The system automatically switches modes to the appropriate format.
Abstract:
A hardware sensor system comprising a piezo sensor outputting charge data corresponding to a motion, an insulated cable from the piezo sensor to a receiver, to transmit the charge data, an insulated charge to voltage converter on the receiver, the insulated charge to voltage converter converting the charge data to voltage data, an analog-to-digital converter to convert the voltage data to digital data, and an uploader to upload the data to a server for processing.
Abstract:
A method of determining whether a user has fallen comprises detecting a potential fall using a motion sensing device, updating a probability of the potential fall being an actual fall based on an additional sensor, and updating the probability of the potential fall being an actual fall based on user context, the user context including an identified activity prior to the potential fall.
Abstract:
A method of monitoring a user's activity level, and improving the user's health with a wearable device designed to be worn all day. The method comprises in one embodiment determining that the user is wearing the wearable device, and monitoring movements of the user using a motion sensing system in the wearable device. The method further determines when the user has not moved in a period of time, and alerts the user to move, when the user has not moved from an ergonomic activity in a preset period of time. The method further counts steps taken by a user, and identifies and tracks aerobic exercise activity.
Abstract:
The present system ensures that external noise sources do not taint sensor data recorded about a user's sleep parameters, to reduces false positives and false negatives, and provide a more accurate record of the user's sleep sounds, by cycling on and off noise sources. Additionally, the present system, in one embodiment, may be used to track changes in sound patterns from the user and from the environment. This may lead to early warning of health issues, as well as issues with the devices in the bedroom.
Abstract:
A method and apparatus to provide a scheduler comprising determining a current use characteristic for the device based on motion information and active applications, and scheduling a future task.