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Modeling and simulation for smart grid integration of solar/wind energy

机译:太阳能/风能智能电网集成的建模与仿真

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The complexity of the power grid, in conjunction with the ever increasing demand for electricity, creates the need for efficient analysis and control of the power system. The evolution of the legacy system towards the new smart grid intensifies this need due to the large number of sensors and actuators that must be monitored and controlled, the new types of distributed energy sources that need to be integrated and the new types of loads that must be supported. At the same time, integration of human-activity awareness into the smart grid is emerging and this will allow the system to monitor, share and manage information and actions on the business, as well as the real world. In this context, modelling and simulation is an invaluable tool for system behavior analysis, energy consumption estimation and future state prediction. In this paper, a Smart Grid has been designed by MATLAB/SIMULINK approach for analysis of Active Power. Analysis of active power gives the exact idea to know the range of maximum permissible loads that can be connected to their relevant bus bars. This paper presents the change in the value of Active Power with varying load angle in context with small signal analysis. The Smart Grid, regarded as the next generation power grid, uses two-way flow of electricity and information to create a widely distributed automated energy delivery network.
机译:电网的复杂性,以及对电力不断增长的需求,导致需要对电力系统进行有效的分析和控制。由于必须监视和控制大量的传感器和执行器,需要集成的新型分布式能源以及必须负载的新型负载,因此传统系统向新的智能电网的演进加剧了这种需求。被支持。同时,正在将人类活动意识集成到智能电网中,这将使系统能够监视,共享和管理有关业务以及现实世界的信息和操作。在这种情况下,建模和仿真是用于系统行为分析,能耗估算和未来状态预测的宝贵工具。在本文中,通过MATLAB / SIMULINK方法设计了智能电网,用于分析有功功率。对有功功率的分析给出了确切的思路,即知道可以连接到其相关母线的最大允许负载的范围。在小信号分析的情况下,本文提出了随着负载角的变化有功功率值的变化。智能电网被视为下一代电网,它利用双向的电力和信息流来创建广泛分布的自动化能源输送网络。

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