分析新监管框架下可再生能源发电厂的大规模整合

J. Arrinda, J. Barrena, M. Rodriguez, A. Guerrero
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引用次数: 15

摘要

将可再生能源大规模有效地整合到电网中几乎是所有电力系统的一个问题。这些可再生能源(RES)通常基于风能和太阳能光伏发电,由于风和太阳辐照度的变化,无法保持功率参考。目前,由于传统发电厂的支持,这些可再生能源的整合在强电力系统中是可能的,这些发电厂保持了电力系统的稳定性。相反,在脆弱的电网中,可再生能源发电系统的大规模整合可能会给电力系统带来稳定性问题,因此新法规要求它们提供电压控制和频率控制等电网支持功能。此外,为了减少这些可再生能源带来的不确定性,一些政府也在强迫这些可再生能源减少其发电的不确定性。其主要目标是将当前不可控RES的行为转化为稳定可预测的生成,将其从可变不可预测的生成转化为可调度的生成。但要实现这一目标,可再生能源必须得到储能系统(ESS)的支持。本文将描述两种不同的具有代表性的监管要求,分析其理念并提出应对这些新要求的解决方案,同时考虑到位置,设备效率和其他技术问题等几个因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of massive integration of renewable power plants under new regulatory frameworks
Massive effective integration of renewable energies into the electric grid is an issue in almost all electric power systems. These renewable energy sources (RES) are usually based on wind and solar photovoltaic generation and cannot maintain a power reference due to variations in wind and solar irradiance. Currently the integration of these renewable energy sources is possible in strong power systems due to the support of the conventional power plants which maintain the stability of the power system. In weak networks instead, the massive integration of renewable generation systems could generate stability problems to the power system, so they are being required to provide grid support functions as voltage control and frequency control by the new regulations. Moreover, in order to reduce the uncertainty introduced by these RES, some governments are also compelling these RES to reduce the uncertainty of their generation. The main goal of this is to transform the behavior of the current uncontrollable RES to stable and predictable generation, converting it from variable and unpredictable generation into dispatchable generation. But to achieve this goal the RES have to be supported by Energy Storage Systems (ESS). In this paper two different representative regulatory requirements will be described, analyzing the philosophy of them and proposing solutions to face up to these new requirements, taking into account several factors as the location, efficiency of the equipments, and other technical issues.
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