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Renewable energy management through microgrid central controller design: An approach to integrate solar, wind and biomass with battery

机译:通过微电网中央控制器设计进行可再生能源管理:一种将太阳能,风能和生物质与电池整合的方法

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In this study, an isolated microgrid comprising of renewable energy (RE) sources like wind, solar, biogas and battery is considered. Provision of utility grid insertion is also given if total microgrid sources falls short of supplying the total load. To establish an efficient energy management strategy, a central controller takes the decision based on the status of the loads and sources. The status is obtained with the assistance of multi-agent concept (treating each source and load as an agent). The data acquisition system of these renewable sources and loads consists of multiple sensors interconnected through Low Power Radio over one of many GPRS communication. The Microgrid Central Controller (MGCC) would use an embedded energy management algorithm to take decisions, which are then transmitted to the controllable RE systems to manage the utilization of their power outputs as per the load-supply power balance. A control strategy is adopted to regulate the power output from the battery in case of supply shortage, which results in a floating battery scheme in steady state.
机译:在这项研究中,考虑了一个隔离的微电网,该微电网包括风,太阳能,沼气和电池等可再生能源(RE)。如果总的微电网资源不足以提供总负荷,则还可以使用公用电网。为了建立有效的能源管理策略,中央控制器根据负载和电源的状态做出决策。在多主体概念的帮助下获得状态(作为代理处理每个源和负载)。这些可再生资源和负载的数据采集系统由多个传感器组成,这些传感器通过低功率无线电通过许多GPRS通信之一互连在一起。微电网中央控制器(MGCC)将使用嵌入式能量管理算法来做出决策,然后将其传输到可控RE系统,以根据负载电源功率平衡来管理其功率输出的利用率。在电源短缺的情况下,采用一种控制策略来调节电池的输出功率,从而使电池方案处于稳定状态。

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