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A Modular Stacked DC Transmission and Distribution System for Long Distance Subsea Applications

机译:适用于远距离海底应用的模块化堆叠式直流输配电系统

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摘要

A new power transmission and distribution concept—modular stacked direct current (dc) (MSDC)—architecture is described. Its main application is subsea oil and gas (O&G) processing, where the marinization of system components, their reliability and retrieval are the most critical requirements. In contrast to conventional HVDC systems, the proposed MSDC technology achieves the required dc transmission voltage by stacking a number of power converter building blocks in series that are easy to marinize. Since each building block is similar to a standard variable frequency drive, the MSDC technology has potentially much lower cost and higher reliability. Moreover, the modular architecture renders the system fault tolerant and capable of operating in a degraded mode. The architecture is also highly reconfigurable as the field matures and the loads evolve over time. A generic subsea field scenario for O&G has been designed and analyzed. The MSDC architecture and associated system control strategy are developed and tested using a real-time simulation platform together with an experimental scaled-down prototype of 160 kVA.
机译:描述了一种新的电力传输和分配概念-模块化堆叠式直流(DC)(MSDC)体系结构。它的主要应用是海底油气(O&G)处理,其中对系统组件的腌制,其可靠性和可回收性是最关键的要求。与常规的HVDC系统相比,建议的MSDC技术通过将多个易于腌制的功率转换器构建模块串联起来而达到所需的直流传输电压。由于每个构建块都类似于标准变频驱动器,因此MSDC技术可能具有更低的成本和更高的可靠性。此外,模块化体系结构使系统具有容错能力,并且能够以降级模式运行。随着领域的成熟和负载随时间的推移,该架构还具有高度可重新配置的能力。已经设计和分析了O&G的通用海底野外方案。利用实时仿真平台以及160 kVA的按比例缩小实验原型,开发并测试了MSDC体系结构和相关的系统控制策略。

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