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Building-integrated microgrid: Advanced local energy management for forthcoming smart power grid communication

机译:建筑物集成微电网:用于即将进行的智能电网通信的高级本地能源管理

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摘要

In an increasingly constrained context with severe requirements of quality, safety and environment respect, a building-integrated photovoltaic (B1PV) involves advanced local energy management rather than photovoltaic (PV) power permanent grid injection. This paper focus on building-integrated micro-grid (BIMG) design and implementation applied to BIPV system with energy storage and smart grid communication. The goal is to propose power balancing strategy with smart grid interaction, aiming at reducing grid peak consumption, avoiding undesirable grid power injection, making full use of local PV production. The energy management is carried out considering grid time-of-use tariffs, grid access limits, storage capacity, load and PV power shedding if necessary. Based on experimental platform, the results show that the system maintains stability and confirm the relevance of the proposed local energy management giving perspectives on better integration of small PV plant in power grid.
机译:在对质量,安全和环境方面的严格要求日益受限的情况下,建筑物集成光伏(B1PV)涉及先进的本地能源管理,而不是光伏(PV)永久电网注入。本文着重于建筑集成微电网(BIMG)的设计和实现,该技术应用于具有储能和智能电网通信的BIPV系统。目标是提出一种具有智能电网交互功能的功率平衡策略,旨在降低电网峰值能耗,避免不良的电网功率注入,并充分利用本地光伏发电。进行能源管理时应考虑电网的使用时间费率,电网的接入限制,存储容量,负荷和PV功率损耗。基于实验平台,结果表明该系统保持了稳定性,并确认了所建议的局部能源管理的相关性,从而为小型光伏电站在电网中的更好集成提供了前景。

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