A High Performance Channel Simulator RF Transceiver for 5G Communications

A channel simulation, radio frequency transceiver technology, applied in transmission monitoring, electrical components, transmission systems, etc., can solve problems such as inapplicability and inseparability, and achieve the effects of reducing complexity, large processing bandwidth, and reducing power requirements

Active Publication Date: 2021-04-27
SOUTHEAST UNIV
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  • Abstract
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  • Claims
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Problems solved by technology

There are two main reasons why traditional measurement methods are no longer suitable for the measurement of 5G massive MIMO digital multi-beam arrays: 1) Digital multi-beam antenna arrays are different from traditional antenna arrays. Traditional indicators that characterize antenna performance are: gain, bandwidth, efficiency, etc. are no longer suitable for an accurate description of the behavior of digital multibeam arrays
2) Traditional antenna measurement methods and measurement platforms use the antenna or array as a single component to measure separately, but for digital multi-beam arrays, antennas and transceivers (Tx / Rx) and even digital-to-analog / analog-to-digital conversion ( ADC / DAC) circuits will be integrated and cannot be separated, which makes the original index parameters that describe the characteristics of the antenna and RF transceiver components alone cannot be applied

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  • A High Performance Channel Simulator RF Transceiver for 5G Communications
  • A High Performance Channel Simulator RF Transceiver for 5G Communications
  • A High Performance Channel Simulator RF Transceiver for 5G Communications

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Embodiment Construction

[0018] This specific embodiment discloses a high-performance channel simulator radio frequency transceiver applied to 5G communication, such as figure 1 As shown, it includes 64 channels and adopts eight parallel board plug-in structure. For the 3.5GHz working frequency band, the distance between the parallel plates is half of the wavelength corresponding to the center frequency, that is, 45mm. There are multiple FPGAs and local oscillator modules on the backplane. A single board consists of eight parallel channels, such as figure 2 As shown, the channel spacing is half of the wavelength corresponding to the center frequency, that is, 45mm. In addition to eight channels, a single board also includes modules such as power modules, CPLDs, crystal oscillators, and bus transceivers.

[0019] The single channel adopts TDD mode, and the single-pole double-throw switch is switched between the transmitting and receiving links under the control of CPLD. The transmitting link adopts...

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Abstract

The invention discloses a high-performance channel simulator radio frequency transceiver applied to 5G communication, which includes a transmission link and a reception link; in the transmission link, the intermediate frequency signal passes through the first intermediate frequency filtering module, the up-mixing module, The first automatic gain amplification control module, single-pole double-throw switch and radio frequency filter module are finally transmitted; in the receiving link, the radio frequency signal passes through the radio frequency filter module, single-pole double-throw switch, low noise amplifier, second automatic gain control amplification module, The down-mixing module, the second intermediate frequency filtering module and the third automatic gain amplification control module finally receive back; in addition, a local oscillator module providing local oscillator signals for the up-mixing module and the down-mixing module is also included. The invention can effectively reduce the complexity of the channel simulator, reduce the power demand for a single channel in 5G research, reduce power consumption, and has the characteristics of large processing bandwidth, small area, and good performance.

Description

technical field [0001] The invention relates to the field of microwave and millimeter waves, in particular to a high-performance channel simulator radio frequency transceiver applied to 5G communication. Background technique [0002] "5G massive MIMO digital multi-beam array measurement principle research and instrument development" National Natural Science Foundation of China is aimed at the 5G era. In order to further enhance the status of China in the field of global communications, China is trying to lead the direction of standard formulation and industrialization, and improve my country's research It was established to improve the research level of institutions and universities, promote the development of industries, and incubate a number of world-leading high-tech enterprises. At present, the development of 5G has entered a critical stage, and the development of 5G technology must be the key development direction of the development of my country and the global informati...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H04B17/391H04B1/40
CPCH04B1/40H04B17/391
Inventor 田玲郭翀黄菲孙涛洪伟张念祖余超蒋志浩张雷陈鹏
Owner SOUTHEAST UNIV
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