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High-Frequency Operation of a DC/AC/DC System for HVDC Applications

机译:用于HVDC应用的DC / AC / DC系统的高频操作

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摘要

Voltage ratings for HVdc point-to-point connections are not standardized and tend to depend on the latest available cable technology. DC/DC conversion at HV is required for interconnection of such HVdc schemes as well as to interface dc wind farms. Modular multilevel voltage source converters (VSCs), such as the modular multilevel converter (MMC) or the alternate arm converter (AAC), have been shown to incur significantly lower switching losses than previous two- or three-level VSCs. This paper presents a dc/ac/dc system using a transformer coupling two modular multilevel VSCs. In such a system, the capacitors occupy a large fraction of the volume of the cells but a significant reduction in volume can be achieved by raising the ac frequency. Using high frequency can also bring benefits to other passive components such as the transformer but also results in higher switching losses due to the higher number of waveform steps per second. This leads to a tradeoff between volume and losses which has been explored in this study and verified by simulation results with a transistor level model of 30-MW case study. The outcome of the study shows that a frequency of 350 Hz provides a significant improvement in volume but also a penalty in losses compared to 50 Hz.
机译:HVdc点对点连接的额定电压尚未标准化,并且往往取决于最新的可用电缆技术。此类HVdc方案的互连以及与dc风电场的接口都需要HV的DC / DC转换。模块化的多电平电压源转换器(VSC),例如模块化的多电平转换器(MMC)或备用臂式转换器(AAC),已显示出比以前的两级或三级VSC产生的开关损耗要低得多。本文提出了一种使用耦合两个模块化多级VSC的变压器的dc / ac / dc系统。在这样的系统中,电容器占据了电池单元的很大一部分,但是通过提高交流频率可以实现体积的显着减小。使用高频还可以给其他无源组件(如变压器)带来好处,但由于每秒波形步数增加,还会导致更高的开关损耗。这导致了体积与损耗之间的折衷,该问题已在本研究中进行了探讨,并通过30 MW案例研究的晶体管级模型的仿真结果进行了验证。研究结果表明,与50 Hz相比,350 Hz的频率可显着提高音量,但也会降低损耗。

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