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Using smart power management control to maximize energy utilization and reliability within a microgrid of interconnected solar home systems

机译:使用智能电源管理控制来最大化互连太阳能家用系统微电网内的能源利用率和可靠性

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摘要

Over the past 20 years, off-grid solar home systems (SHS), comprised of solar panels, batteries, a charge controller and loads, have proved the most popular and immediate solution increasing energy access, mainly through rural electrification, across the Global South. Although deployed in significant numbers, issues remain with SHS cost, reliability, utilization and sustainability. Interconnection of SHS to form a microgrid of connected prosumers and consumers may offer a solution that, by employing smart management of the power distribution amongst connected households, has the potential to ‘unlock’ latent generation and storage capacity and so improve reliability and security of supply, reduce the system cost per head, and ultimately the levelized cost of energy supplied. These factors combine to improve the overall sustainability, efficiency and flexibility of SHS technology. This paper presents the functionality of a Smart Power Management (SPM) that seeks to distribute power across prosumers/consumers connected to a microgrid of interconnected SHS, to maximise the utilisation of available generation and storage across the system and so improve the reliability and affordability of the energy supplied. The SPM is applied and appraised using a simulation involving representative generation and demand profiles for a village with a high penetration of SHS technology. The power management methodology utilizes algorithms applied to manage power flows between customers. The simulated results demonstrate significant improvements in reliability of supply within the microgrid during low generation season.
机译:在过去的20年中,由太阳能电池板,电池,充电控制器和负载组成的离网太阳能家用系统(SHS)已被证明是最受欢迎和最直接的解决方案,主要通过农村电气化来增加全球南方的能源获取。尽管部署数量众多,但SHS成本,可靠性,利用率和可持续性方面仍然存在问题。 SHS互连以形成连接的生产者和消费者的微电网,可以提供一种解决方案,通过对连接的家庭之间的配电进行智能管理,有可能“释放”潜在的发电和存储容量,从而提高供电的可靠性和安全性,降低了人均系统成本,最终降低了能源供应的平均成本。这些因素共同提高了SHS技术的总体可持续性,效率和灵活性。本文介绍了智能电源管理(SPM)的功能,该功能旨在在连接到互连SHS的微电网的生产者/消费者之间分配功率,以最大程度地利用整个系统中可用发电和存储的利用率,从而提高可靠性和可承受性。提供的能量。 SPM的应用和评估使用的模拟涉及具有代表性的发电和需求概况,该村庄具有SHS技术的高度渗透性。电源管理方法论采用了用于管理客户之间的电源流的算法。模拟结果表明,在低发电季节,微电网内的供电可靠性有了显着提高。

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