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6 results about "Remote recording" patented technology

Remote recording, also known as location recording, is the act of making a high-quality complex audio recording of a live concert performance, or any other location recording that uses multitrack recording techniques outside of a recording studio. The multitrack recording is then carefully mixed, and the finished result is called a remote recording or a live album. This is in contrast to a field recording which uses few microphones, recorded onto the same number of channels as the intended product. Remote recording is not the same as remote broadcast for which multiple microphones are mixed live and broadcast during the performance, typically to stereo. Remote recording and remote broadcast may be carried out simultaneously by the same crew using the same microphones.

A product life cycle-based carbon emission statistical tracking system

The present application belongs to the field of carbon emission statistics, and particularly relates to a carbon emission statistical tracking system based on the whole life cycle of products, which can effectively track the total carbon emission of each product in the whole life cycle after being sold out through the cooperation of a detection module, a remote recording module and a terminal receiving module; meanwhile, the time t less than the threshold t1 is not included in the total amount, so that the situation of carbon emission caused by the operator's accidental touch to start or the start for a few minutes and the discovery of problems requiring timely stop can be reduced, the accurate calculation of the carbon emission amount is improved; through the setting of the influence coefficient u, the problem of the increase of the carbon emission amount caused by the insufficient treatment of raw materials in the same use time due to the increase of the service life of the product, the aging of parts and the accumulation of residues in the product can be corrected.
Owner:HONG KONG CHINA (SHENZHEN) CARBON ASSET OPERATION CO LTD

Fireproof door open state monitoring device

This utility model relates to the field of fire door monitoring technology, and more particularly to a fire door normally open status monitoring device, including a frame, a fire door, a support plate, a first magnet, a tilt detector, a rotating rod, a fixing plate, a second magnet, an alarm, a controller, and mechanical monitoring components. The fire door is rotatably connected to the frame via hinges. Both the frame and the fire door are made of metal. A mounting groove is provided on the right side of the upper front of the frame. The first magnet is embedded in the rear side wall of the support plate, and the support plate is magnetically attracted and fixed to the frame mounting groove through the first magnet. The tilt detector detects the rotation angle of the fire door in real time. When the detected opening angle exceeds a set threshold, the controller automatically triggers the alarm to issue a voice prompt, and simultaneously uploads the status information to a remote monitoring system, realizing timely perception, on-site warning, and remote recording of the fire door's normally open status, improving the response efficiency of fire management.
Owner:JIANGXI JIAJIA DIGITAL SERVICE CO LTD

Remote dual-recording graphical user interface for electronic device

1. The name of the design product: remote dual-recording graphical user interface of electronic device. 2. The use of the design product: for an electronic device. 3. The design points of the design product: in the graphical user interface. 4. The picture or photo that best shows the design points: design 1 front view. 5. Design 1 is designated as the basic design. 6. The use of the graphical user interface: the present graphical user interface is used for remote dual-recording. Design 1 front view is a task details interface, the user clicks the "remote recording" button, a pop-up window appears, as shown in design 1 interface change state diagram 1, the user clicks the "OK" button on the design 1 interface change state diagram 1 pop-up window, enters the task list interface, as shown in design 1 interface change state diagram 2, the user clicks the first task on design 1 interface change state diagram 2, enters the remote dual-recording scene selection interface of the task, as shown in design 1 interface change state diagram 3, the user clicks the "remote dual-recording applet" button on design 1 interface change state diagram 3, as shown in design 1 interface change state diagram 4, the user clicks the "OK" button on design 1 interface change state diagram 4, enters the recording environment detection interface, as shown in design 1 interface change state diagram 5, after the user responds according to the interface prompt, the interface jumps to design 1 interface change state diagram 6, prompting that the recording environment detection is passed, the user clicks the "next step (adjust automatically after 3 seconds)" button on design 1 interface change state diagram 6, enters the human certificate authentication interface, as shown in design 1 interface change state diagram 7, the user clicks the "immediate authentication" button at the top of design 1 interface change state diagram 7, and performs photo verification, as shown in design 1 interface change state diagram 8, after the face recognition is completed, the interface displays that the authentication is successful, as shown in design 1 interface change state diagram 9. The main view of Design 2 is a task detail interface. The user clicks the "remote recording" button, a pop-up window appears, as shown in Design 2 interface change state diagram 1. The user clicks the "OK" button on the pop-up window of Design 2 interface change state diagram 1, enters the task list interface, as shown in Design 2 interface change state diagram 2. The user clicks the first task on Design 2 interface change state diagram 2, enters the remote dual-recording scene selection interface of the task, as shown in Design 2 interface change state diagram 3. The user clicks the "remote dual-recording applet" button on Design 2 interface change state diagram 3, as shown in Design 2 interface change state diagram 4. The user clicks the "No" button on Design 2 interface change state diagram 4, enters Design 2 interface change state diagram 5, and clicks the "add recording location" button on Design 2 interface change state diagram 5 to add a recording location, as shown in Design 2 interface change state diagram 6. The user fills in the information on Design 2 interface change state diagram 6, as shown in Design 2 interface change state diagram 7. The user clicks the "OK" button on Design 2 interface change state diagram 7, enters the recording environment detection interface, as shown in Design 2 interface change state diagram 8. The user responds according to the interface prompt, the interface jumps to Design 2 interface change state diagram 9, and the interface prompts that the recording environment detection is passed. The user clicks the "next step (3 seconds later, automatically adjust)" button on Design 2 interface change state diagram 9, enters the person and certificate authentication interface, as shown in Design 2 interface change state diagram 10. The user clicks the "immediate authentication" button at the top of Design 2 interface change state diagram 10 to perform photo verification, as shown in Design 2 interface change state diagram 11. After face recognition is completed, the interface displays authentication success, as shown in Design 2 interface change state diagram 12. 7. Other situations that need to be explained Other notes: "XXX" in the interface represents replaceable text and / or numbers and / or letters and / or symbols. The gray blocks in the figure are replaceable content screens.
Owner:PICC INFORMATION TECH CO LTD +1

Remote wave recording method and system of Internet of Things

The invention discloses an Internet of Things remote wave recording method and system, and the method comprises the steps: receiving a wave recording request transmitted by a user terminal, and building a WebSocket channel with the user terminal which transmits the wave recording request; sending a wave recording starting instruction to wave recording equipment to control the wave recording equipment to upload waveform data; receiving the waveform data uploaded by the wave recording equipment, and analyzing the waveform data to obtain visual information; and pushing the visual information to the user terminal which sends out the wave recording request through the WebSocket channel for displaying. According to the method provided by the invention, remote acquisition, transmission, processing and visual display of the data of the wave recording equipment are realized through the Internet of Things technology, the problem of waveform lag in data transmission is effectively solved, the data monitoring efficiency is improved, and convenience is brought to use of a user.
Owner:SHENZHEN HOPEWIND ELECTRIC CO LTD

Transformer-based health state detection method and system

The invention provides a transformer-based health state detection method and system, and relates to the technical field of electrical digital data processing, and the method comprises the steps: building a transformer health assessment index system based on a furfural concentration index, an interfacial tension index and a moisture content index; establishing a piecewise linear score mapping function, and converting indexes into standardized health scores of 0-100 scores; introducing a dynamic weight factor and calculating an index health index; when any index is missing, activating a multi-strategy missing data substitution mechanism, generating a health index estimation value, and forming a health index set; health state grading judgment and dynamic anomaly perception are executed; and when the abnormal judgment condition is met, remote recording is executed. The transformer health state detection method solves the problems that a transformer health state detection method in the prior art is poor in data integrity, cannot realize multi-source information fusion and is poor in abnormal response timeliness.
Owner:GUILIN UNIV OF AEROSPACE TECH

System and method for creating a cloud-based at-home recording studio

ActiveUS12694081B2Software engineeringConnection manager
A cloud-based recording studio infrastructure includes a remote recording studio system including a cloud computing module configured to instantiate a virtual machine instance associated with a user and dynamically provision computing resources to the virtual machine instance associated with the user, the virtual machine instance associated with the user being configured as a music production environment, a cloud storage module configured to manage a cloud storage network, store an uploaded file from the user to the cloud storage network, and restrict access to one or more resources stored on the cloud storage network to the virtual machine instance associated with the user, and a connection manager module configured to authenticate the user and manage access to the virtual machine instance associated with the user.
Owner:FREEMAN ADAM