摘要:
An embodiment of the present invention implements a detection sensor unit, a plurality of wireless intelligent control boards, and a remote control server, thereby enabling the implementation of a wireless detecting and recognizing function, a function of lighting disaster fire locations, a function of lighting a peripheral environment of the lighting and simultaneously ensuring site images through a camera photographing function so as to transmit the site images to a control center or a management center, a function of wirelessly warning and providing warning-light to the surroundings and neighborhood when an intruder is recognized, a function of quickly extinguishing a fire by using a private fire extinguisher so as to extinguish the site of disaster fire early on, a function of wirelessly warning and providing warning-light when surroundings suddenly become dark because of a disaster or power outage, a function of quickly informing a management center or a neighboring control center and allowing safe evacuation by using a portable flashlight in a state of emergency, and a function of quickly discovering the location of a disaster victim outside by using a location tracking function embedded as a wireless function, when an exit of a building has fallen because of a disaster and the disaster victim cannot find the exit; and the like.
摘要:
Embodiments relate generally to systems and methods for controlling the display of a gas detector. A method may comprise receiving sensed data from a plurality of sensors of the gas detector; displaying the received sensed data on a user interface of the gas detector, wherein the user interface comprises a display, and wherein the display includes information for more than one of the plurality of sensors; and changing the display to an alarm screen that includes only the alarm information, when the gas detector is in an alarm or alert mode. A gas detector configured to detect multiple gases may comprise a plurality of sensors configured to detect a plurality of gases and conditions, and a user interface comprising a display configured to display information received from the plurality of sensors.
摘要:
Techniques are disclosed for using synthetic jet technology as an air delivery device for sensing applications. In particular, a synthetic jet device is used to deliver a controlled airflow or other fluidic flow to a sensor measurement area. Such a sensing system can be used to detect accurate concentration of target features present in the ambient surroundings, such as gases, particles, solutions, mixtures, and any other environmental features that can be sensed from a controlled airflow. An example application is air quality monitoring by using one or more synthetic jet devices to deliver a known or otherwise controlled airflow to a sensing area, thereby allowing for detection of harmful or otherwise unacceptable concentrations of particulate matter, gases, or air pollutants. In some embodiments, a synthetic jet device is operatively coupled with a sensor via a flow channel in a common housing, so as to provide a controlled flow sensing system.
摘要:
The present disclosure generally relates to chemical threat detection, and more specifically, to a wearable chemical threat detector (100) for an indoor or outdoor environment. In one embodiment, a method for chemical sensing and detection is disclosed. The method includes (a) deploying a plurality of wearable chemical detectors (100), (b) receiving an environmental air sample by at least one of the plurality of wearable chemical detectors (100), (c) receiving an alert of one or more chemical(s) present within the environmental air sample from at least one wearable chemical detector (100), (d) analyzing the alert for data relating to at least one of a chemical name, a chemical concentration, a chemical category, or a toxicity level, and (e) transmitting the data to a central data collection site. Furthermore, the embodiments disclosed may provide a warning and/or an evacuation route to a user once a threat is detected.
摘要:
A medical gas alarm systems and associated methods are disclosed. A method of monitoring the medical gas system includes the steps of monitoring a characteristic of a medical gas system using at least one monitoring instrument positioned in a medical gas supply network; generating and sending a particular signal from the monitoring instrument to a CPU when the characteristic measured by the monitoring instrument passes a predetermined threshold; generating a fault signal from the CPU when the CPU determines that a fault condition has occurred; retrieving a stored message from the CPU in response to the fault signal, and in which the stored message other than the fault or threshold condition monitored by the instrument; and sending the stored message from the CPU to an output at a medical gas alarm module.
摘要:
Techniques are disclosed for using synthetic jet technology as an air delivery device for sensing applications. In particular, a synthetic jet device is used to deliver a controlled airflow or other fluidic flow to a sensor measurement area. Such a sensing system can be used to detect accurate concentration of target features present in the ambient surroundings, such as gases, particles, solutions, mixtures, and any other environmental features that can be sensed from a controlled airflow. An example application is air quality monitoring by using one or more synthetic jet devices to deliver a known or otherwise controlled airflow to a sensing area, thereby allowing for detection of harmful or otherwise unacceptable concentrations of particulate matter, gases, or air pollutants. In some embodiments, a synthetic jet device is operatively coupled with a sensor via a flow channel in a common housing, so as to provide a controlled flow sensing system.
摘要:
In various embodiments, a hazard detector is presented. The hazard detector may include a hazard detection sensor that detects a presence of a type of hazard. The hazard detector may include a light and a light sensor that senses a brightness level in an ambient environment of the hazard detector. The hazard detector may include a processing system configured to receive an indication of the brightness level in the ambient environment of the hazard detector from the light sensor. The processing system may determine the brightness level in the ambient environment of the hazard detector has reached a threshold value. A status check of one or more components of the hazard detector may be performed. The processing system may cause the light to illuminate using a selected illumination state in response to the determining the brightness level in the ambient environment of the hazard detector has reached the threshold value.
摘要:
An alert system and method includes at least first and second detectors that each includes environmental condition detection circuitry, data processing circuitry, and wireless communication circuitry. The first and second detectors are respectively carried by first and second users. The first and second detectors detect environmental conditions in a vicinity of the respective detectors and communicate detection data to the respective data processing circuitry. In response to detection of a hazardous environmental condition by the first detector, the first detector provides an alert notification to the first user and communicates the alert to the second detector via wireless communication, and in response to receipt of an alert from the first detector, the second detector transmits the alert to another detector or device via wireless communication. A communicated or transmitted alert may include an incrementing indicator of a number of hops or levels of transmission of the alert.
摘要:
A method for providing environment information to a mobile device user is presented. The method comprises receiving a request for target environment information from a mobile device, determining the pose of the mobile interface device relative to the target environment, and obtaining target environment data for one or more measurable environment parameters (e.g., radiation level). The target environment data is used to assemble augmented reality information configured for viewing in conjunction with a real-time view of the target environment captured by the mobile interface device. The target augmented reality information is then transmitted to the mobile device for display to the user.