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基于智能控制技术的节能型熔接焊机电源设计 被引量:1
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作者 武交峰 《电焊机》 2017年第6期28-32,共5页
聚氯乙烯材料的管道在流体介质中应用非常广泛。为保证管材之间连接质量,利用智能控制技术和新型电力电子器件,设计节能型熔接焊机电源。该电源以单片机为控制核心,利用模糊PID自适应控制技术,计算外部环境温度和焊接界面温度,根据电压... 聚氯乙烯材料的管道在流体介质中应用非常广泛。为保证管材之间连接质量,利用智能控制技术和新型电力电子器件,设计节能型熔接焊机电源。该电源以单片机为控制核心,利用模糊PID自适应控制技术,计算外部环境温度和焊接界面温度,根据电压偏差大小,利用模糊自适应调整PID参数,在线自校正,快速找出合适的输出直流电压占空比,提高焊接速度。在硬件电路设计方面,采用π型LC滤波电路和由IGBT构成的双直流HPWM变换电路,大大改善了输出电压质量。对所设计电源进行仿真分析,结果表明,该电源节约了电路成本,提高了调节速度,输出电压稳定。 展开更多
关键词 电熔焊接 模糊自适应 双直流变流
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Hierarchical control for parallel bidirectional power converters of a grid-connected DC mlcrogrnd
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作者 Hui-yong HUt Yong-gang PENG +3 位作者 Yang-hong XIA Xiao-ming WANG Wei WEI Miao YU 《Frontiers of Information Technology & Electronic Engineering》 SCIE EI CSCD 2017年第12期2046-2057,共12页
The DC microgrid is connected to the AC utility by parallel bidirectional power converters (BPCs) to import/export large power, whose control directly affects the performance of the grid-connected DC microgrid. Much... The DC microgrid is connected to the AC utility by parallel bidirectional power converters (BPCs) to import/export large power, whose control directly affects the performance of the grid-connected DC microgrid. Much work has focused on the hierarchical control of the DC, AC, and hybrid microgrids, but little has considered the hierarchical control of multiple parallel BPCs that directly connect the DC microgrid to the AC utility. In this paper, we propose a hierarchical control for parallel BPCs of a grid-connected DC mierogrid. To suppress the potential zero-sequence circulating cm-cent in the AC side among the parallel BPCs and realize feedback linearization of the voltage control, a d-q-O control scheme instead of a conventional d-q control scheme is proposed in the inner current loop, and the square of the DC voltage is adopted in the inner voltage loop. DC side droop control is applied to realize DC current sharing among multiple BPCs at the primary control level, and this induces DC bus voltage deviation. The quantified relationship between the current sharing error and DC voltage deviation is derived, indicating that there is a trade-off between the DC voltage deviation and current sharing error. To eliminate the current sharing error and DC voltage deviation simultaneously, slope-adjusting and voltage-shifting approaches are adopted at the secondary control level. The pro- posed tertiary control realizes precise active and reactive power exchange through parallel BPCs for economical operation. The proposed hierarchical control is applied for parallel BPCs of a grid-connected DC microgrid and can operate coordinately with the control for controllable/uncontrollable distributional generation. The effectiveness of the proposed control method is verified by corresponding simulation tests based on Matlab/Simulink, and the performance of the hierarchical control is evaluated for prac- tical applications. 展开更多
关键词 Parallel bidirectional power converters Hierarchical control DC microgrid
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