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Impact of Renewable Energy Sources on the German Power System

机译:可再生能源对德国电力系统的影响

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In Germany due to the continuous high expansion of the intermittent power supply capabilities of wind turbines and photovoltaic systems, the operational modes of thermal generation units will be influenced essentially until 2020 and beyond. With the renewable energy sources (e.g. wind power (WP) and photovoltaic (PV)) in power system increase, the conventional power plants on line will be replaced by WP and PV. Thus, the sources of conventional reserve available to the system will be reduced and fewer conventional plants will be available online to share the regulation burden. Therefore the acceleration time constant is reduced if some of the conventional power plant generators with inertia (masses) are disconnected and replaced by the intermittent generators while the total nominal power value of the whole system remains constant. With the reduction of inertia not only the frequency deviation after disturbances will increase substantially but also more oscillation occurs which causes reduction in system stability. Therefore different scenarios of Renewable Energy sources will be presented and for the investigation of the system stability influenced by the primary control of the remaining conventional power plants the following mathematical methods are useful and have been used nonlinear dynamic simulation andl inear eigenvalue calculation. The models were created using MATLAB / Simulink software.
机译:在德国,由于风力涡轮机和光伏系统间歇性供电能力的持续高增长,到2020年及以后,热力发电机组的运行模式将受到重大影响。随着电力系统中可再生能源(例如风能(WP)和光伏(PV))的增加,在线的常规发电厂将被WP和PV取代。因此,将减少系统可用的常规储备资源,并且更少的常规工厂将在线可用以分担监管负担。因此,如果某些具有惯性(质量)的常规电站发电机被断开并由间歇发电机代替,而整个系统的总标称功率值保持恒定,则加速时间常数会减小。随着惯性的减小,不仅扰动后的频率偏差将大大增加,而且还会发生更多的振荡,这会导致系统稳定性降低。因此,将介绍可再生能源的不同方案,并且为了研究受其余常规电厂的主要控制影响的系统稳定性,以下数学方法很有用,并已用于非线性动态仿真和最小特征值计算。模型是使用MATLAB / Simulink软件创建的。

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