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1)  particle swarm
粒子群
1.
Optimization for ball mill operation based on improved particle swarm optimization algorithm;
基于改进粒子群算法的球磨机运行优化
2.
Study of distribution network reconfiguration based on hybrid particle swarm intelligence genetic algorithm;
基于混合粒子群智能遗传算法的配电网络重构优化研究
3.
Holes optimization and implementation of hydraulic manifold blocks based on genetic particle swarm algorithm;
基于遗传粒子群算法的集成块布孔优化及其实现
2)  particle swarm optimization
粒子群
1.
Modeling of penicillin ferment process based on particle swarm optimization and support vector machines;
基于粒子群和支持向量机为青霉素发酵建模
2.
The simulated annealing and chaotic particle swarm optimization algorithm;
混沌模拟退火粒子群优化算法
3.
Computation method for chaos particle swarm optimization based on relaxation velocity update frequency;
减少速度更新频率的混沌粒子群算法
3)  PSO
粒子群
1.
PID parameters tuning based on improved PSO algorithm;
基于改进粒子群优化算法的PID参数整定
2.
The Improvement of PSO Algorithm and Application of Text Classifier;
粒子群算法的改进及其在文本分类上的应用
3.
Human Face Recognition Based on PSO and BP Neural Network;
基于粒子群BP神经网络人脸识别算法
4)  particle swarm optimization(PSO)
粒子群
1.
In this paper,a method based on particle swarm optimization(PSO) and fuzzy neural network(FNN) is presented for short-term load forecasting.
为了从根本上提高短期电力负荷预测中神经网络的速度和预测精度,提出了将粒子群算法和BP算法相结合的短期负荷预测方法。
2.
On the basis of analyzing the parameter performance of support vector machine(SVM) for regression estimation,a shortterm load forecasting method based on SVM is presented in which the parameters in SVM are optimized by particle swarm optimization(PSO).
在分析支持向量机SVM(Support VectorM ach ine)回归估计方法参数性能的基础上,提出粒子群算法PSO(Partic le Swarm Optim ization)优化参数的SVM短期电力负荷预测模型。
3.
This paper applies Particle Swarm Optimization(PSO)algorithm in the cryptology area to design Boolean function in cryptography.
粒子群(Particle Swarm Optimization,PSO)算法应用于密码学领域,设计密码学中的密码函数-布尔函数。
5)  triple-particle swarm
三粒子群
6)  Particle swarm optimization
粒子群法
补充资料:颜料β粒子群
分子式:
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性质:系指由多个原级粒子或二次粒子或它们两者通过比较弱的物理力,以粒子与粒子的棱或角相接触而形成的疏松的集合体,又称颜料三次粒子(pigment tertiary particle),也称颜料β粒子群(β-particle cluster of pigment)。由于粒子间的结合力弱,可通过颜料分散过程使其分离开,故它本身不能在颜料最终应用系统中作为一个实体而存在。是由颜料在制造和贮存过程中产生的。附聚体(agglomerate)与聚集体(aggregate),絮凝体(flocculate)不可混淆。

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