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Stability enhancement of DG sourced power system with modified AVR and PSS

机译:改进后的AVR和PSS增强了DG供电系统的稳定性

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Development in power market and environmental issues has encouraged increased penetration of distributed energy sources and large scale of renewable energy sources in distribution system. Distribution system is facing stability issues with integration of distributed generators and controllers that were not much discussed in the past. Many existing methods have been proposed to enhance the stability of renewable energy based distribution system with source assumed as constant and uncertainties of wind and solar power is not much discussed in the literatures along with stability issues. This proposed method presents the stability of renewable energy based distribution system with varying energy source considering intermittent nature of wind and solar energy using probabilistic approach. The system is supplied by conventional and distributed generating sources like PV and wind. Monte Carlo approach is used for predicting the wind and solar power uncertainties. Proposed work explains both small signal stability and transient stability enhancement of DG sourced power system with power system stabilizer and automatic voltage regulator. It is carried out in is 4 machine 10 bus system. The initial simulation has been carried out using ETAP/MATLAB
机译:电力市场和环境问题的发展鼓励分布式能源的普及和配电系统中大规模可再生能源的普及。分布式系统正面临着分布式发电机和控制器集成的稳定性问题,这在过去并没有太多讨论。已经提出了许多现有的方法来增强可再生能源为基础的配电系统的稳定性,其中源被假定为常数,并且关于风能和太阳能的不确定性以及稳定性问题在文献中没有太多讨论。考虑到风能和太阳能的间歇性,该提出的方法利用概率方法提出了具有可变能源的基于可再生能源的配电系统的稳定性。该系统由常规的分布式发电源(例如PV和风能)提供。蒙特卡洛方法用于预测风能和太阳能的不确定性。拟议的工作解释了带有电源系统稳定器和自动电压调节器的DG供电系统的小信号稳定性和瞬态稳定性的增强。它是在4机10总线系统中执行的。初始模拟已使用ETAP / MATLAB进行

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