基于可再生能源的电力发电不间断并网运行研究

Vilas S. Bugade, P. K. Katti
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引用次数: 0

摘要

电力系统中的后帕台农神庙是分布式发电(DG)形式的可再生能源(RES)电网整合的需求侧管理。乍一看,系统分级主要集中在多种能源的电网整合上。本文介绍了太阳能光伏、风能等多种能源三相并网的设计与开发拓扑结构。考虑到这些电源的最优潮流分析。通过数字信号处理器(DSP)和开关装置提供实时监控、控制和保护。所有电力系统参数(电压、电流、温度等)通过并口控制器局域网总线(CANBUS)显示在显示单元上。这些参数对于与res并网时共耦合点(PCC)电压、频率和波形的同步至关重要,也有利于保护装置的切换。为了实现远程监视和控制,在以太网端口中提供GSM。最后,根据这些特征,可以对线性和动态加载进行测试。
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Development of Electrical Energy Generation Based Uninterrupted Operation for Grid Integration of Utility using RES
The post-parthenon in electrical power system is prominence on demand side management for grid integration with renewable energy sources (RES’s) in the form of distributed generation (DG). At a fleeting look system up gradation predominantly focuses on grid integration of multiple energy sources. This paper presents the design and development topology for multiple sources of energy like solar PV, wind energy etc. for three phase grid integration. It is in consideration with an optimal power flow analysis of these sources. The real time monitoring, controlling and protection is provided through digital signal processor (DSP) and switch gear. All the power system parameters (voltage, current, temperature etc.) are displayed on display unit through parallel port controller area network bus (CANBUS). These parameters are vital for synchronizing of voltage, frequency and waveform at point of common coupling (PCC) at the time of grid integration with RES. Also these are expedient for the switching of protective devices. For remotely monitoring and control an Ethernet port are implemented with the provision of GSM in it. Finally with these features testing is conceded for linear and dynamic loading.
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