Patent classifications
G01N33/0068
Ultra-lightweight, handheld gas leak detection device
Systems, devices and methods including a handheld sensing device comprising: a sensor configured to measure ambient methane, ethane, propane, butane, and/or pentane concentrations; and a handle, where the sensor is disposed on a first end of the handle; control electronics comprising: a processor having addressable memory, the processor in communication with the sensor, where the processor is configured to: receive the measured ambient gas concentrations; and detect elevated ambient gas concentrations that may be attributed to a natural gas emissions source based on the measured ambient gas concentrations.
Emissions detection system and methods
In one illustrative configuration, a method of locating an emission source of a target substance at a site is disclosed. The method may include obtaining predicted substance concentrations of the target substance from a prediction model to generate a mapping of a weighted mean of the plurality of the predicted substance concentrations grouped in a predetermined number of feature groups. A simulated plume model is generated for each emission source present at the site to calculate representative circular normal distributions for each air quality monitor. By performing an analysis of the plurality of representative circular normal distributions in relation to the mapping, a target emission source is identified.
Method for Operating a Nitrogen Oxide Sensor
A method for operating a nitrogen oxide sensor of an internal combustion engine. When, for a number greater than 1 of operating cycles each including exactly two directly consecutive periods of time, where during a respective first of the periods of time the engine is in fired operation and during the respective second period of time a fired operation of the engine ceases, it is determined that an arithmetic mean of the first periods of time is less than a first threshold value and an arithmetic mean of the second periods of time is less than a second threshold value, a special overrun operating state of a computer is set, where after deactivation of the engine, the computer is kept activated in the special overrun operating state for a longer overrun period, where the nitrogen oxide sensor is kept in a state of operating readiness during the overrun period.
FERMENTATION GAS SENSOR SYSTEM
A gas sensor system for use in an exhaust gas tube, the system having at least two separate optical sensor assemblies that are separately positioned across the exhaust gas tube from one another, wherein the optical sensor assemblies each comprise a pair of light sources and a pair of light receivers such that light from each of the multiple light sources is received by each of the four light receivers, thereby generating multiple sets of optical measurements.
MOVING DEVICE FOR CONTAMINATION DETECTION, CONTAMINATION DETECTING SYSTEM AND METHOD, AND COMPUTER-READABLE RECORDING MEDIUM
Provided is a contamination detecting system including at least one moving device; a monitoring unit configured to detect whether a contamination situation is occurring; a control unit configured to dispatch the at least one moving device in an anticipated contaminated region in response to the occurrence of a contamination situation, configure a moving route of the moving device, and controlling a contamination detecting operation of the moving device; a map receiving unit configured to receive an anticipated contamination map for the anticipated contamination region from the moving device; and a map updating unit configured to receive a contamination detection result of the moving device in a region corresponding to the anticipated contamination map and updates the anticipated contamination map in correspondence thereto.
METHOD FOR PROVIDING AIR QUALITY INFORMATION
A method for providing air quality information is disclosed. The method includes steps of collecting single-point air quality data from a plurality of mobile devices in a predetermined period of time, wherein the single-point air quality data is sensed by an actuating and sensing module of the mobile device and transmitted to a cloud data processing device through communication transmission. The single-point air quality data is combined with geographic information and processed to generate a real-time air quality map by the cloud data processing device. After the cloud data processing device receives a current location from a client device through communication transmission, information including a motion direction, a designated route, air quality information related to the current location, abnormal-air-quality notification or an evacuated route is transmitted to the client device.
Gas Sensing Systems and Methods of Operation Thereof
A method of sensing includes obtaining first sensor data points by a sensor, obtaining first reference data points, and determining a correlation between the first sensor data points and the first reference data points. The method of sensing further includes measuring second sensor data points by the sensor, obtaining second reference data points, and adjusting the second sensor data points using the correlation and the second reference data points to obtain corrected sensor data points. The method of sensing also includes determining sensed values from the corrected sensor data points and storing the sensed values.
APPARATUS AND METHOD FOR GENERATING OLFACTORY INFORMATION RELATED TO MULTIMEDIA CONTENT
An apparatus for generating olfactory information related to multimedia content may comprise a processor. The processor may receive multimedia content, extract an odor image or an odor sound included in the multimedia content, and generate representative data related to the odor image or the odor sound by describing information on the extracted odor image or odor sound in a data format sharable by a media thing.
Method for Obtaining a Pollution Condition of at Least One Component of a Gardening and/or Forestry Apparatus and Gardening and/or Forestry Apparatus System
A method obtains a pollution condition of at least one component of a gardening and/or forestry apparatus. The method includes the steps of: obtaining at least one pollution parameter which describes at least one source of pollution prevalent during an operation of the gardening and/or forestry apparatus; obtaining the pollution condition of the component based on the obtained pollution parameter; and outputting and/or transmitting information based on the obtained pollution condition.
CONTINUOUS GAS DETECTION AND MONITORING APPARATUS FOR HARSH ENVIRONMENTS
A continuous gas detection and monitoring apparatus includes a gas detection and monitoring unit mounted in a sealable case, and a gas sensor in sealed fluid communication with an ambient atmosphere outside the case, a temperature and humidity sensor in sealed fluid communication with the inner volume of the case, a pressure sensor, data storage, and a gas sensor operatively connected to a data processor, and an externally operable switch for selectively connecting the data processor to the data storage to allow data transfer from the data storage to the data processor. A plumbing system includes a pump system, a solenoid system, and tubes interconnecting the gas sensor, pumping system, solenoid system, and ambient external environment. The gas sensor is mounted to the gas sensor housing and is in sealed fluid communication with the external environment via the plumbing system.