Digital correlator and digital complete-polarization microwave radiometer

A digital correlator and related computing technology, applied in the field of microwave radiation, can solve problems such as bulky volume, power consumption exceeding 100 watts, and inability to meet full-polarization microwave radiometers, and achieve the effect of avoiding thermal noise and phase deviation

Active Publication Date: 2014-01-22
NAT SPACE SCI CENT CAS
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  • Abstract
  • Description
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  • Application Information

AI Technical Summary

Problems solved by technology

The disadvantage of this technology is that the overall system of electronic circuit construction is bulky, the power consumption exceeds 100 watts, and the sampling rate is greatly limited by the subsequent combination circuit.
[0010] The bandwidth of the above-mentioned digital correlators realized in the

Method used

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  • Digital correlator and digital complete-polarization microwave radiometer
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  • Digital correlator and digital complete-polarization microwave radiometer

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Embodiment Construction

[0035] The present invention will be further described now in conjunction with accompanying drawing.

[0036] refer to figure 2, in one embodiment, the digital fully polarized microwave radiometer of the present invention comprises a dual-polarized antenna, a superheterodyne receiver and a digital correlator; as image 3 As shown, the digital correlator includes a sampling module, a multiplexing module, a correlation calculation module, a synchronous sampling clock module, and a synchronous control module; the dual-polarized antenna receives two signals of horizontal polarization and vertical polarization , the received two-way signals are amplified, filtered and mixed in the superheterodyne receiver to obtain two-way signals, and the two-way signals are first sampled at high speed by the sampling module in the digital correlator to obtain Two digital signals, the two digital signals are multiplexed by the multiplexing module and then input to the correlation calculation mod...

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Abstract

The invention relates to a digital correlator. The digital correlator comprises a sampling module, a multiplexing module, a correlation calculation module, a synchronous sampling clock module and a synchronous control module, wherein the sampling module is realized by adopting an analog-digital converter with the sampling rate being equal to or higher than 5GHz; the multiplexing module, the correlation calculation module and the synchronous control module are realized on an FPGA chip with the main frequency being higher than 400MHz; different sampling units in the sampling module are used for carrying out high-speed sampling on external input signals respectively and obtaining two paths of digital signals which are input into the correlation calculation module after being multiplexed by the multiplexing module; the correlation calculation module is used for carrying out speed reduction and correlation calculation on inputted digital signals; the synchronous sampling clock module is used for ensuring consistent phase of sampling clocks reaching the different sampling units in the sampling module, and the synchronous control module is used for controlling synchronous working among the different sampling units in the sampling module.

Description

technical field [0001] The invention relates to the field of microwave radiation, in particular to a digital correlator and a digital full-polarization microwave radiometer. Background technique [0002] Based on the traditional microwave radiometer, the full polarization microwave radiometer further extracts the Stokes polarization information of the observation target. It is a new type of microwave remote sensor developed in the middle and late 1890s in the world. Research hotspots in Europe and other countries and regions. The full-polarization microwave radiometer can obtain the global large-area wind field results in a short time, and at the same time, it can also obtain parameters such as atmospheric cloud water content, water vapor content and sea surface temperature, which is quite beneficial to ocean and climate research, and is also conducive to improving the atmosphere. and the accuracy of ocean forecast models. The research on the digital correlator, which is t...

Claims

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Application Information

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IPC IPC(8): H03M1/54
Inventor 陆浩王振占李斌刘璟怡董帅
Owner NAT SPACE SCI CENT CAS
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