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Method for optimizing luminescent powder synthesizing proportion

An optimization method and technology of luminescent powder, applied in chemical statistics, chemical machine learning, chemical data mining, etc., can solve the problems of difficult operation and high threshold for luminescent powder synthesis

Active Publication Date: 2019-04-19
XIDIAN UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0004] However, when using the heuristic algorithm, not only certain chemical-related knowledge is required, but also programming and code writing are required. Therefore, the threshold for using the heuristic algorithm to guide the synthesis of luminescent powder is high and the operation is difficult. Therefore, how can it be convenient? It has become an important research topic to effectively obtain the ratio information of each element in the process of luminescent powder synthesis

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  • Method for optimizing luminescent powder synthesizing proportion
  • Method for optimizing luminescent powder synthesizing proportion
  • Method for optimizing luminescent powder synthesizing proportion

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Experimental program
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Embodiment 1

[0064] Such as figure 1 as shown, figure 1 It is a schematic flow chart of the method for optimizing the synthesis ratio of luminescent powder proposed in the present invention. The embodiment of the present invention proposes a method for optimizing the synthesis ratio of luminescent powder, which includes the following steps:

[0065] S01: Establish an algorithm library. The algorithm library includes genetic algorithm, particle swarm algorithm and simulated annealing algorithm. After setting up the running programs of these algorithms in the algorithm library, they can be called directly during operation, avoiding traditional users from using algorithms to calculate At the same time, it is necessary to design the program by itself and carry out the trouble of code writing and debugging;

[0066] S02: Select the target algorithm from the algorithm library, and set parameters according to the target algorithm;

[0067] S03: Obtain n first-generation luminescent powder data ...

Embodiment 2

[0087] This embodiment provides a method for optimizing the synthetic ratio of luminescent powder according to the genetic algorithm, and the process includes:

[0088] On the basis of Embodiment 1, step S02 is specifically:

[0089] S211: Select a genetic algorithm as the target algorithm;

[0090] S212: Set the elitism probability r according to the selected genetic algorithm;

[0091] Preferably, in this embodiment, r=70%.

[0092] Such as figure 2 as shown, figure 2 It is a schematic flow chart of the method for optimizing the synthesis ratio of luminescent powder according to the genetic algorithm proposed by the present invention. Further, step S04 is specifically:

[0093] S411: According to the roulette selection method, randomly select 2 first-generation information codes from n first-generation information codes, and mark them as paternal information codes, for example, randomly select A01 and A02 from A0, and mark these two first-generation information codes ...

Embodiment 3

[0110] This embodiment provides a method for optimizing the synthesis ratio of luminescent powder according to the particle swarm algorithm, and the process includes:

[0111] On the basis of Embodiment 1, step S02 is specifically:

[0112] S221: Select a particle swarm optimization algorithm as the target algorithm;

[0113] S222: According to the particle swarm algorithm, set the particle swarm parameters, the particle swarm parameters include the inertia factor ω, the first acceleration factor c1 and the second acceleration factor c2, the inertia factor ω, the first acceleration factor c1 and the second acceleration factor c2 are all positive number;

[0114] Preferably, in this embodiment, ω=0.4, c1=c2=2.

[0115] Such as image 3 as shown, image 3 It is a schematic flow chart of the method for optimizing the synthesis ratio of luminescent powder according to the particle swarm algorithm proposed by the present invention. Further, step S04 includes:

[0116] S421: Ac...

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Abstract

The invention relates to a method for optimizing a luminescent powder synthesizing proportion. The method comprises the following steps of S01, establishing an algorithm database which comprises a genetic algorithm, a particle swarm algorithm and a simulated annealing algorithm; S02, selecting a target algorithm from the algorithm database, and setting a parameter according to the target algorithm; S03, successively obtaining n first-generation luminescent powder data, wherein each first-generation luminescent powder data is the composition ratio of each element in one luminescent powder particle and the quantum yield of the luminescent powder particle, wherein n is a positive integer; and S04, according to the first-generation luminescent powder data, by means of the target algorithm, performing calculation for obtaining the luminescent powder synthesizing proportion. According to the method for optimizing the luminescent powder synthesizing proportion, a plurality of optimizing algorithms are supplied for guiding luminescent powder synthesizing operation; through setting a program and finishing code compiling in advance, not only is a problem of single algorithm in traditional guidance for the luminescent powder synthesis operation settled, but also a problem of requirement for self program designing and code compiling in a traditional algorithm is settled.

Description

technical field [0001] The invention relates to the technical field of luminescent powder synthesis, in particular to a method for optimizing the synthesis ratio of luminescent powder. Background technique [0002] One of the main tasks in the synthesis of rare earth luminescent materials is to synthesize rare earth luminescent materials with high quantum yield. Due to the different synthesis ratios of the elements in the luminescent powder particles, the quantum yields of the luminescent powder particles are also different. In order to achieve the set quantum yield To increase the yield, it is necessary to recombine the elements in the luminescent powder particles. [0003] In the literature "A search for new red and green phosphors using a computationalevolutionary optimization process", the feasibility of using a heuristic algorithm to guide the synthesis of luminescent powder is proved. In the process of using the heuristic algorithm to guide the synthesis of luminescen...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G16C20/70
Inventor 吕锐婵肖历杨蒋雪王燕兴刘军田捷
Owner XIDIAN UNIV