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41results about How to "High-speed data communication" patented technology

Circuit used for petroleum underground three-dimensional acoustic wave signal receiving sensor array

The invention discloses a circuit used for a petroleum underground three-dimensional acoustic wave signal receiving sensor array. The circuit consists of a plurality of sealed electronic units and is positioned inside a receiving acoustic system; the plurality of sealed electronic units are connected with a main control electronic unit through a serial high-speed transmission bus and are connected with an annular array of a receiving sensor; and the sealed electronic unit specifically comprises a plurality of signal channels, a data buffer memory, a data acquisition controller and a data transmission controller. Therefore, the circuit used for the petroleum underground three-dimensional acoustic signal receiving sensor array realizes high-speed, efficient and reliable data communication between the plurality of sealed electronic units and the main control electronic unit positioned in a main electronic cabin, and solves the problems of realizing the connection between a three-dimensional acoustic logging receiving sensor array and an electronic system and realizing a multi-channel parallel signal processing electronic system under the conditions of underground high temperature and narrow space.
Owner:BC P INC CHINA NAT PETROLEUM CORP +1

Techniques for communicating information using Hermite-Gaussian basis functions

Systems and methods for efficiently conveying one or more communication channels over a transmission medium. Communication is effected by transforming an incoming digital bit stream into a Hermite-Gaussian information stream that includes a plurality of Hermite-Gaussian packets. This transformation is accomplished through the use of a plurality of Hermite-Gaussian basis functions. The Hermite-Gaussian information stream is then transmitted over the transmission medium. More particularly, digital bit streams carried on one or more incoming channels may be in the form of binary “on” and “off” bits. These digital bits are converted into a plurality of Hermite-Gaussian waveform components which together comprise a Hermite-Gaussian packet. The conversion process maps each of respective incoming digital bits to a corresponding one of a group of Hermite-Gaussian functions. Optionally, this mapping process could be implemented sequentially, or in parallel form, such that a first bit is mapped to a first Hermite-Gaussian function, a second bit is mapped to a second Hermite-Gaussian function, and so on, until the Nth Hermite-Gaussian function is reached, whereupon the process cycles back to the first Hermite-Gaussian function. In any case, the presence of a “1”, “on”, or “high” bit enables the corresponding Hermite-Gaussian function, whereas the presence of a “0”, “off”, or “low” bit disables the corresponding Hermite-Gaussian function. When enabled, each respective Hermite-Gaussian function specifies the transmission of a corresponding Hermite-Gaussian waveform component. Each waveform component is substantially confined within a range of values in both the frequency and time domains.
Owner:BANDWIDTH TECH

M2M communication device

The invention relates to an M2M communication device comprising a baseband processing unit, a power supply unit, a storage unit, a user identification unit, a debugging interface unit, a clock unit, a USB interface unit and a double-antenna radio frequency unit, wherein the input end of the power supply unit is connected with the USB interface unit to receive electricity supplied by a power supply, and the output end of the same is electrically connected with the baseband processing unit, the storage unit, the user identification unit and the debugging interface unit and supplies the electricity for the baseband processing unit, the storage unit, the user identification unit and the debugging interface unit; the clock unit is connected with the baseband processing unit and the double-antenna radio frequency unit and provides working clocks for the baseband processing unit and the double-antenna radio frequency unit; and the baseband processing unit is connected with the storage unit, the user identification unit, the debugging interface unit, the USB interface unit and the double-antenna radio frequency unit to realize two-way communication. The invention can realize high-speed data transmission and data communication, thereby expanding the load bearing of service information, i.e. videos, audios, images, and the like which are provided by main control equipment.
Owner:SICHUAN JIUZHOU ELECTRIC GROUP

Circuit used for petroleum underground three-dimensional acoustic wave signal receiving sensor array

The invention discloses a circuit used for a petroleum underground three-dimensional acoustic wave signal receiving sensor array. The circuit consists of a plurality of sealed electronic units and is positioned inside a receiving acoustic system; the plurality of sealed electronic units are connected with a main control electronic unit through a serial high-speed transmission bus and are connected with an annular array of a receiving sensor; and the sealed electronic unit specifically comprises a plurality of signal channels, a data buffer memory, a data acquisition controller and a data transmission controller. Therefore, the circuit used for the petroleum underground three-dimensional acoustic signal receiving sensor array realizes high-speed, efficient and reliable data communication between the plurality of sealed electronic units and the main control electronic unit positioned in a main electronic cabin, and solves the problems of realizing the connection between a three-dimensional acoustic logging receiving sensor array and an electronic system and realizing a multi-channel parallel signal processing electronic system under the conditions of underground high temperature andnarrow space.
Owner:BC P INC CHINA NAT PETROLEUM CORP +1
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