Signal transmission method based on acoustic orbital angular momentum multiplexing

An orbital angular momentum, multiplexing technology, applied in the field of acoustic wave signal transmission, to achieve the effect of promoting application, distortion-free information transmission, and flexible design

Active Publication Date: 2017-11-07
NANJING UNIV
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  • Abstract
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  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, since the signal to be transmitted may have aliasing in different time or frequency ranges, the received signal after encoding and decoding will be greatly distorted from the original signal
In addition, using only one degree of freedom of time or frequency as the base vector of codec can only expand the channel capacity in a limited range

Method used

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  • Signal transmission method based on acoustic orbital angular momentum multiplexing
  • Signal transmission method based on acoustic orbital angular momentum multiplexing
  • Signal transmission method based on acoustic orbital angular momentum multiplexing

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Embodiment Construction

[0022] The present invention will be further described below in conjunction with the accompanying drawings.

[0023] like figure 1 Shown, the signal transmission method based on acoustic orbital angular momentum multiplexing of the present invention comprises the following steps:

[0024] (1) Use 16 micro-speakers to form a speaker array, arranged in 2 circles at equal intervals, each circle contains 8 speakers, and the angular interval of each speaker is 45°, the radius of the first circle array is 35mm, the second circle The radius of the array is 60mm, 8 signal generators independently input signals to each unit of the speaker array, and the 2 speaker units at the same angle in the first circle and the second circle array are provided with input signals by the same signal generator , the sound wave that produces the first-order acoustic orbital angular momentum is used as channel 1 at the input end, and the sound wave that produces the second-order acoustic orbital angular...

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Abstract

The invention discloses a signal transmission method based on acoustic orbital angular momentum multiplexing. The method comprises the following steps that a plurality of mini loudspeakers form a loudspeaker array, sound waves of acoustic orbital angular momentums of different orders are generated as independent channels, wherein the sound waves of the acoustic orbital angular momentums of the different orders are different channels, and each group of binary data streams formed by 0-1 are encoded on amplitudes and phases of the sound waves of one group of channels as signal sources; and (2) the signal source of an input end transmits a sound wave signal of the signal source to demodulation metasurfaces which are arranged in sequence through a transmission pipe, and the sound wave signal detected by a microphone is arranged at the back of each demodulation metasurface and is the original input data stream. According to the signal transmission method based on acoustic orbital angular momentum multiplexing, the signals can be simultaneously loaded to sound pressure values of vortex fields of different orders to carry out synchronous transmission, and meanwhile, the designed demodulation metasurfaces can be utilized to realize high-efficiency separation and detection of different pieces of information.

Description

technical field [0001] The invention relates to a signal transmission method based on acoustic orbital angular momentum multiplexing, and belongs to the field of acoustic wave signal transmission. Background technique [0002] The ocean is a huge treasure house of various minerals, oil and gas and biological resources. With the development of human civilization, the strategic position of the ocean has become increasingly prominent. All countries are actively developing and utilizing ocean resources and space, and adopt various advanced means to realize the long-distance transmission of underwater communication signals. The further deepening of ocean exploration puts forward higher requirements for the efficient transmission of communication signals under water. In seawater, the attenuation of light waves and radio waves is very serious, and the propagation distance is very limited, which is difficult to meet the needs of human ocean activities. Acoustic waves are currently...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H04B11/00H04B13/02
CPCH04B11/00H04B13/02
Inventor 梁彬江雪程建春仇成伟
Owner NANJING UNIV
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