Abstract:
The present invention provides a mobile station apparatus. The mobile station apparatus comprises an RF transmitting/receiving module, a display module, a memory comprising an RSSI database, and a control program. When the mobile station apparatus moves along a path comprising plural candidates of communication locations, the control program records a plurality of RSSIs, which are received by the RF transmitting/receiving module from the candidates along the communication locations, and at least one path parameter in the RSSI database, and then according to a predetermined display algorithm, the control program controls the display module to display at least one recorded RSSI and the corresponding path parameter as a reference, based on which the mobile station apparatus selects a communication location candidate for providing the mobile communication service.
Abstract:
An alerting method for recharging a battery of a mobile device. The method includes collecting measured data with the mobile device, comparing the measured data with a statistic model of recharging patterns of the mobile device, determining if it is currently a suitable time for charging the battery of the mobile device according to a predetermined relation in the statistic model, and alerting a user of the mobile device to recharge the battery if it is currently a suitable time for charging the battery of the mobile device.
Abstract:
A method for changing outputting settings for a mobile unit. The mobile unit has a user profile of a user, and the user profile contains a first data and a second data corresponding to first settings and second settings. The method includes monitoring the user's physical status to gather a third data, comparing the third data to the first data and the second data for selecting the outputting settings from the first settings and the second settings, and adjusting at least one output device of the mobile unit by the outputting settings.
Abstract:
A radiation detection method and apparatus thereof for estimating radiation power received by the mobile station. The locations of nearby base stations and the mobile station are obtained from the broadcast system messages and the location service provided by the service provider, and based on the location information, the radiation power is estimated according to the distances between the base stations and the mobile station. In addition, the radiation estimation process also utilizes the radiation power of monitored base stations constantly measured by the mobile station for cell selection to determine the effects of interference. Based on a preset safety value and the estimated radiation power, the radiation detection device of the present invention automatically issues an alert when entering a high radiation environment.