Method and system for constructing no-hit-zone bipolar frequency hopping code

A technology with no collision zone and construction method, applied in the transmission system, electrical components, etc., can solve the problems that the address code cannot be completely orthogonal, the OCDMA system is difficult to be practical, and the number of two-dimensional coherent OCDMA access users is limited.

Active Publication Date: 2014-12-24
SHENZHEN UNIV
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Problems solved by technology

[0006] At present, the two-dimensional coherent OCDMA system uses a bipolar m-frequency hopping sequence, and the address codes cannot be completely orthogonal (the minimum cross-correlation limit is 1), and the cross-correlation characteristics are not ideal, so the system has multiple access interference and beat noise
Especially when the number of concurrent users is large, multiple access interference and beat noise become the most important n

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  • Method and system for constructing no-hit-zone bipolar frequency hopping code
  • Method and system for constructing no-hit-zone bipolar frequency hopping code
  • Method and system for constructing no-hit-zone bipolar frequency hopping code

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Embodiment Construction

[0044] Such as figure 1 As shown, the present invention discloses a method for constructing a bipolar frequency hopping code with no collision zone, comprising the following steps:

[0045] In step S1, a frequency hopping sequence NHZ with no collision zone is constructed;

[0046] In step S2, a Walsh sequence is constructed;

[0047] In step S3, the frequency hopping sequence NHZ with no collision zone is combined with the Walsh sequence to form a bipolar frequency hopping code with no collision zone.

[0048] In the step S1, it is assumed that there is a set F={a 1 ,...a u ,...av ,...a M},in, M is the number of sequences, and L is the sequence period. If Z AN and Z CN Indicates the width of the no-collision zone of the autocorrelation and cross-correlation functions, with Z N Indicates the collision-free zone width of the frequency hopping sequence set, then

[0049] Z AN = min u ...

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Abstract

The invention provides a method and system for constructing a no-hit-zone bipolar frequency hopping code. The method for constructing the no-hit-zone bipolar frequency hopping code includes the steps that first, a no-hit-zone frequency hopping sequence NHZ is constructed; second, a Walsh sequence is constructed; third, the no-hit-zone frequency hopping sequence NHZ and the Walsh sequence are combined to form the no-hit-zone bipolar frequency hopping code. The method and system for constructing the no-hit-zone bipolar frequency hopping code have the advantages that according to the constructed no-hit-zone bipolar frequency hopping code, all codons are totally orthogonal as long as the delay between users is within a zero correlation zone, so that multi-site interference and beat noise of a two-dimensional coherent OCDMA system will be completely eliminated, and the near-far effect of the two-dimensional coherent OCDMA system can also be eliminated. Therefore, by means of the no-hit-zone bipolar frequency hopping code constructed through the method and system, a high-capacity two-dimensional coherent OCDMA system can be achieved, and the no-hit-zone bipolar frequency hopping code can be applied to an optical access network, an optical local area network, an optical code label switching network, an optical fiber sensor network and the like.

Description

technical field [0001] The invention relates to the fields of optical access network, optical local area network, optical code label switching network, optical fiber sensor network, etc., and in particular relates to a construction method and system of a bipolar frequency hopping code with no collision area. Background technique [0002] Optical Code Division Multiple Access (OCDMA) has the characteristics of broadband, security and random instant access, and is one of the best solutions for future high-speed local area networks and access networks. According to the degree of freedom, it can be divided into one-dimensional OCDMA system and two-dimensional OCDMA system. The address code of the two-dimensional OCDMA system not only expands in the time domain, but also expands in the wavelength, which is called two-dimensional optical orthogonal code. [0003] At present, many scholars at home and abroad have constructed many types of two-dimensional OCDMA address codes. Based...

Claims

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Application Information

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IPC IPC(8): H04B1/715
Inventor 吉建华王可徐铭张志朋杨淑雯马君显
Owner SHENZHEN UNIV
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