Modeling a Bulb-Style Kaplan Unit Hydrogovernor and Turbine in Mathworks-Simulink and RTDS-RSCAD

Abhishek Banerjee, S. Alam, T. Mosier, J. Undrill
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引用次数: 3

Abstract

Some run-of-river (ROR) hydropower plants use a horizontal bulb-style Kaplan turbine. This turbine and the corresponding governor are not represented well in standard high-fidelity power-system modeling platforms. This paper presents the characterization, development, and modeling of bulb-style Kaplan turbine and associated hydrogovernor equipment in two platforms: Simulink from the MathWorks, Inc., and RSCAD from RTDS Technologies, Inc. The developed models enable accurate assessment of the response of a bulb-style Kaplan hydropower unit to changes in electrical loading and water conditions. The resulting models enable accurate digital real-time simulation with hardware-in-the-loop testing of this class of turbine, which was not previously possible. This, in turn, improves the ability to innovate these technologies and hybridize them in a lab setting, accelerating the potential for innovation in this type of ROR hydropower plant.
在Mathworks-Simulink和RTDS-RSCAD中建模球茎式卡普兰机组调速器和水轮机
一些河流(ROR)水电站使用水平球茎式卡普兰涡轮机。在标准的高保真电力系统建模平台中不能很好地表示该涡轮机和相应的调速器。本文介绍了球茎式Kaplan涡轮和相关调速器设备在两个平台上的特性、开发和建模:MathWorks公司的Simulink和RTDS技术公司的RSCAD。所开发的模型能够准确地评估电灯泡式卡普兰水力发电机组对电力负荷和水条件变化的响应。由此产生的模型可以通过硬件在环测试对这类涡轮机进行精确的数字实时仿真,这在以前是不可能的。这反过来又提高了创新这些技术的能力,并在实验室环境中将它们杂交,加速了这种类型的ROR水电站创新的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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