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文章摘要
高频融冰激励电源及其控制策略的研究
Study on high frequency melting ice excitation source and control strategy
Received:April 16, 2018  Revised:April 16, 2018
DOI:10.19753/j.issn1001-1390.2019.010.023
中文关键词: 高频电源  并联输出  载波相移  双环控制  环流抑制
英文关键词: high frequency source, parallel output, carrier phase-shifting, double-loop control, circulating current suppression
基金项目:
Author NameAffiliationE-mail
wangyongan* Changsha University of Science and Technology 1042357886@qq.com 
zhouyusheng Changsha University of Science and Technology zysdl0193@sina.com 
yuanxiaolei Changsha University of Science and Technology 835304732@qq.com 
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中文摘要:
      高频激励融冰是一种新型输电线路融冰方法,利用覆冰在高频电场下是有损电介质和高频电流的集肤效应的共同作用对线路进行融冰,高频融冰激励电源是该融冰技术的关键装置。文中研究了一种5kHz高频融冰激励电源,通过逆变模块并联实现系统大容量的输出。常规SPWM较难实现高频率的输出,利用了载波相移技术产生逆变器开关的驱动信号,降低开关的工作频率,提高电源的输出频率。提出了一种电压电流双闭环加环流抑制的控制策略,电压外环保证电压稳定输出,电流内环采用电感电流反馈,改善了系统的动态响应,环流抑制环抑制各模块间的环流,提高了模块的功率分配均匀度。仿真验证了激励电源的设计和控制方法的可行性。
英文摘要:
      Ice-melting with high frequency excitation is a new method of ice-melting for transmission lines. The icing is a lossy dielectric under high frequency electric field. The ice is melted by lossy dielectric heat and the skin effect of high frequency current. High frequency melting ice excitation device is the key device of the ice melting technology.In paper a 5kHz high frequency melting ice excitation device is studied by achieving the output of large capacity system through inverter parallel.The conventional SPWM is more difficult to achieve high frequency output.A drive signal of the inverter switches is generated using CPS-SPWM technique,reduce the switching frequency of the switch, improve the output frequency of the system. A control strategy of double loop and circulation current suppression is put forward,the output voltage loop to ensure a stable output voltage and the current loop using inductor current feedback to improve the system dynamic response,through the circulation current suppression restraining the circulation current between modules.The uniformity of the power distribution module is improved.The simulation results validate the feasibility of the design of the device and the control method.
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