隔离级联DAB DC-DC变换器提升中直流电压到HVDC

Muhammad Danial Afridi
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引用次数: 0

摘要

海上风电场通常使用交流系统从每个发电机收集电力,并通过高、重型升压变压器增加电压。直流集电网最近也被考虑作为简化和最小化海上风电场平台的解决方案。直流集电电网提供了一种额外的方法来降低海上风电场的复杂性。然而,要提高直流输电的直流电压,需要研制大功率高压变流器,这是一个技术难题。本研究利用隔离级联双有源桥(DAB) DC-DC变换器将中等直流电压升压到高压直流。隔离级联DAB DC-DC变换器在输出端采用串联连接,在输入端采用并联连接,以获得高转换比和高功率。双向DAB DC-DC转换器可以设计成功率密度在几十到几百千瓦之间的变化,这取决于所使用的组件和转换器最有效工作的开关频率。在输入并联输出串联(IPOS)拓扑中,5kv MVDC输入通过DAB DC-DC级联多达30级,可以产生225 kV HVDC。该转换器系列因其可扩展性和灵活性而非常有用,因为可以在使用相同电池的同时增加功率和额定电压。通过MATLAB Simulink仿真,验证了系统的基本工作特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Isolated Cascaded DAB DC-DC Converter to Boost Medium DC Voltage to HVDC
The offshore wind farms typically use ac system to collect power from each generator, with the voltage increased by means of high, heavy step-up transformers. DC collection grids have also recently been taken into consideration as solution to simplify and minimize the offshore windfarm platforms. DC collection grids offer an additional method to reduce complexity of offshore windfarms. However, to increase the DC voltage for HVDC transmission requires the development of high-power and high voltage converters, which presents a technical challenge. This research makes use of an isolated cascaded dual active bridge (DAB) DC-DC converter to boost medium DC voltage to HVDC. Isolated Cascaded DAB DC-DC Converters are connected in series on the output side and in parallel on the input side to obtain a high transformation ratio and high power. The bidirectional DAB DC-DC converters cab be designed with power densities in the variability of tens to hundreds of kilowatts, depending on the components used and the switching frequency at which the converters function most effectively. The input parallel output series (IPOS) topology, 225 kV HVDC can be generated from a 5 kV MVDC input by cascading DAB DC-DC up to 30 stages. This converter family is useful due to its scalability and flexibility, since the power and voltage ratings can be increased while still using the same cells. MATLAB Simulink simulations are performed and verified the elementary operating characteristics of the system.
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