Abstract:
A mechanism is provided for remotely controlling one or more monitoring devices in a user's household in the event of emergency so as to more productively monitor the emergency situation on a real-time basis. The monitoring devices may include a number of multimedia instruments such as a telephone with an answering machine, a computer with a built-in digital camera, a video recording device, a cellular phone with an integrated digital camera, etc. An emergency service provider may remotely activate the monitoring devices in the user's vicinity upon receiving an emergency help request from the user, and receive the information sent by the monitoring devices to enable the service personnel to plan appropriate response to the emergency at hand. Such an arrangement allows for better monitoring of the user's vicinity in an emergency situation without the need for prolonged user participation in narrating or describing the emergency situation.
Abstract:
A power control apparatus (10) includes a communication interface (21) that transmits and receives signals; a memory (22) that stores information related to power control to perform upon the communication interface (21) receiving a signal of a notification related to power consumption; and a controller (20) that, upon the communication interface (21) receiving a signal of the notification related to power consumption when a power control mode is set based on a predetermined condition, responds with a signal indicating agreement to content of the notification and performs power control based on the information, stored in the memory (22), that is related to power control.
Abstract:
A method is provided for utilizing a personal monitoring device or other personal logging device, to assist an individual in a lifestyle control program. The method includes storing lifestyle data from a statistically large group of persons in a database, collecting, in a personal logging device, corresponding personal lifestyle data; feeding the data from the personal logging device to the database; performing a statistical analysis of the collected lifestyle data, and producing an output and providing feedback to the user based on correlations.
Abstract:
For each first tracker in a first subset there exists a respective second tracker in a second subset such that a distance between the first tracker and the second tracker is shorter than each distance between the second tracker and each of the other first trackers in the subset by more than a threshold distance. In a first time slot, data is wirelessly transmitted using a same first frequency from each of the first trackers in the subset of the first trackers to the respective second tracker in the subset of the second trackers. In a subsequent time slot, the data is wirelessly transmitted from each of the second trackers in the subset of the second trackers to a final destination data collector.
Abstract:
A technical data monitoring device for use with a wireless data monitoring network includes a wireless communications circuit, and at least one technical device/system. The technical data monitoring device establishes a wireless communication link with a programmable interface of a programmable cellular telephone. The device is also configured to send and/or receive wireless packet switched data transmissions, generate data and send data over the wireless communication link for processing by the programmable cellular telephone, and has an associated status condition. Data from the device is (1) sent to be processed and displayed by the programmable cellular telephone and/or (2) sent to be processed and forwarded by the programmable cellular telephone to an Internet website. The device forms part of the wireless data monitoring network in communication with the programmable cellular telephone. The technical device/system can be one of a number of sensors, devices, or systems.
Abstract:
A programmable cellular telephone device includes a programmable interface for establishing a wireless communications link with at least one monitored technical device, and a processing module for authenticating wireless transmissions sent from a programming transmitter by determining if at least one transmission contains a coded number. The device is configured to use memory to store a telephone number or IP address included within the transmission(s) if the processing module authenticates the transmission(s) by determining that the transmission includes the coded number. The stored telephone numbers/IP addresses are numbers to which the device is configured to and permitted to send outgoing wireless transmissions. The device also communicates with a remote data monitoring device and/or sends data to/receives data from an Internet web page. The device processes data received from a monitored technical device, displays the processed data, and/or to transmits the data to an Internet web page.
Abstract:
An antenna is adapted for receiving via a CDMA/1×RTT digital wireless cellular radio communications network incoming data from a client remote control station, and for transmitting via a wireless cellular communications network outgoing data to the client remote control station. A cellular modem is connected to the antenna for establishing a wireless telephony data connection, and a processor is connected to the modem for receiving and processing incoming data, and for processing and communicating outgoing data to the modem for transmission via the antenna and the wireless cellular communications network to the client remote control station. A communication interface, such as a WiFi hotspot, is connected to the processor and connectable to the meter for communicating incoming data from the processor to the meter, and for communicating the outgoing data from the meter to the processor. A power supply is connected for supplying power to the processor and the modem.
Abstract:
A system is provided for obtaining monitored information about an individual and create life activities data. A monitoring device has that detect or measure individual information selected from of at least one of, an individual's activities, behaviors and habit information, and an individual's health. The monitoring device includes ID circuitry with an ID storage that contains a unique individual ID, a communication system which reads and transmits the unique individual ID from the ID storage, a power source and a pathway system. A telemetry system includes a database that receives the individual information from the telemetry device. One or more analysis tools at the telemetry system analyze the individual information and create life activities data.
Abstract:
A programmable communicator device is disclosed having a wireless communications circuit, including an antenna, configured to receive a transmission, and an identity module having a unique identifier. The programmable communicator further includes a processing module including program code configured to determine if the transmission is from an authenticated caller by determining whether a received transmission contains the unique identifier, and memory configured to store telephone numbers or IP addresses received in transmissions from an authenticated caller.
Abstract:
A method for communicating utility data includes receiving a voice signal and a data signal via a utility network, combining the voice signal and the data signal to form a communication signal, and transmitting the communication signal to a plurality of utility asset controllers and handheld devices via the utility network.