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文章摘要
改进粒子群算法的无功补偿方案优化以及对配电网电能质量的改善
Optimization of reactive power compensation scheme based on improved particle swarm optimization algorithm and improvement of power quality of distribution network
Received:April 04, 2019  Revised:April 04, 2019
DOI:10.19753/j.issn1001-1390.2020.18.004
中文关键词: MATLAB  LabVIEW  电能质量  无功补偿  SIT
英文关键词: MATLAB, LabVIEW, Power  quality, reactive  power compensation
基金项目:国网重庆市电力公司项目(2018渝电科技自51#)
Author NameAffiliationE-mail
SONG Dao-jun Urban Power Supply Branch,State Grid Chongqing Electric Power Company 2802478837@qq.com 
JIE Wang* State Key Laboratory of Power Transmission Equipment & System Security and New Technology Chongqing 1371966487@qq.com 
HU Xiao State Key Laboratory of Power Transmission Equipment & System Security and New Technology Chongqing 1877905632@qq.com 
XIONG Lan State Key Laboratory of Power Transmission Equipment & System Security and New Technology Chongqing lxiong@cqu.edu.cn 
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中文摘要:
      以LabVIEW为开发平台对电能质量五项稳态指标进行综合编程,附带参数统计及数据报表等功能,兼具实现了Simulink各无功补偿模型变量与LabVIEW控件间的实时通信,弥补了Simulink在仿真中视觉效果不足和参数修改繁琐的弊端,并降低了LabVIEW无功补偿编程的复杂度。在电能质量检测环节,阐述了稳态指标的分析方法、数据报表及参数统计等功能设计。采用Simulation Interface Toolkit(SIT)调控simulink的方式实现了对改进粒子群优化(Particle Swarm Optimization, PSO)算法进行无功补偿,并与传统无功补偿效果比较,结果显示改进PSO算法能够有效避免电路谐振。实验及仿真证明本软件对于现场无功补偿的设备参数选择具有较好的实用价值。
英文摘要:
      LabVIEW is used as a development platform to comprehensively program five steady-state indicators of power quality, with parameters such as parameter statistics and data reporting. It also realizes real-time communication between Simulink reactive power compensation model variables and LabVIEW controls, making up for Simulink simulation. The disadvantages of insufficient visual effects and cumbersome parameter modifications have reduced the complexity of LabVIEW reactive compensation programming. In the power quality testing, the functional design of the steady state index analysis method, data report and parameter statistics are described. The Simulation Interface Toolkit (SIT) is used to control the Simulink. The reactive power compensation (PSO) algorithm is used to compensate the reactive power compensation. Compared with the traditional reactive power compensation, the improved PSO algorithm can effectively avoid the circuit resonance. . The experiment and simulation prove that the software has good practical value for the selection of equipment parameters for on-site reactive power compensation.
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