通过实时数字仿真对海上平台发电系统的动态控制进行验证

Jully A. Calderón, Johnny J. Orozco, C. A. Guerrero, F. Passos, P. M. Silveira, J. Filho, V. Z. Silva, C. Cavaliere
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引用次数: 2

摘要

发电系统的动态控制是海上平台中最重要的因素之一,因为它负责保持电力系统在稳态和暂态运行时的稳定性,从而避免电力供应完全中断,从而避免巨大的经济损失。在这方面,实时数字模拟器(RTDS)成为一个重要的工具,因为它允许通过硬件在环方案实时动态模拟发电系统,并有可能测试实际控制和保护装置。通常,发电机动态控制的离线仿真研究是在制造商提供的有限信息下进行的,这导致模型使用典型数据,因此,注意到不可靠的响应。然而,为了获得RTDS中电力系统动态的真实行为,其模型的精确表示是必要的。为此,本文利用实际调节器参数和现场试验记录等现场数据,对RTDS某采油平台发电系统进行了动态控制验证。对各种暂态现象进行了仿真,分析了速度调节器和电压调节器的动态响应。现场和实验室试验结果的对比分析验证了RTDS中建立的仿真模型的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic control validation of the power generation system of an offshore platform through real-time digital simulation
The dynamic control of the power generation system is one of the most important elements in an offshore platform, since it is responsible for maintaining the electrical system stability both in steady‐state and transient operation, thus avoiding the complete loss of power supply and, consequently, large economic losses. In this regard, the Real-Time Digital Simulator (RTDS) becomes an important tool, as it allows to simulate the generation system dynamic in real-time with the possibility of testing actual control and protection devices, through a hardware-in-the-loop scheme. Typically, offline simulation studies of the generator dynamic control are carried out with limited information from manufacturers, which leads to the use of typical data for models and, therefore, the obtention of unreliable responses. However, to obtain a realistic behavior of the electrical system dynamic in the RTDS, an accurate representation of its models is necessary. In this sense, this paper presents the dynamic control validation process of the power generation system of an oil extraction platform in the RTDS, through the use of field data, such as actual regulators' parameters and field tests records. Several simulations of transient phenomena were carried out and the dynamic responses of speed and voltage regulators were analyzed. Comparative analysis between field and laboratory test results demonstrates the validation of the simulation model developed in the RTDS.
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