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Turning Base Transceiver Stations into Scalable and Controllable DC Microgrids Based on a Smart Sensing Strategy

机译:基于智能传感策略将基础收发器站转换为可扩展和可控的DC微电网

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摘要

This paper describes a practical approach to the transformation of Base Transceiver Stations (BTSs) into scalable and controllable DC Microgrids in which an energy management system (EMS) is developed to maximize the economic benefit. The EMS strategy focuses on efficiently managing a Battery Energy Storage System (BESS) along with photovoltaic (PV) energy generation, and non-critical load-shedding. The EMS collects data such as real-time energy consumption and generation, and environmental parameters such as temperature, wind speed and irradiance, using a smart sensing strategy whereby measurements can be recorded and computing can be performed both locally and in the cloud. Within the Spanish electricity market and applying a two-tariff pricing, annual savings per installed battery power of 16.8 euros/kW are achieved. The system has the advantage that it can be applied to both new and existing installations, providing a two-way connection to the electricity grid, PV generation, smart measurement systems and the necessary management software. All these functions are integrated in a flexible and low cost HW/SW architecture. Finally, the whole system is validated through real tests carried out on a pilot plant and under different weather conditions.
机译:本文介绍了基础收发器站(BTS)转换为可扩展和可控DC微电网的实用方法,其中开发了能量管理系统(EMS)以最大限度地提高经济效益。 EMS战略侧重于有效地管理电池储能系统(BESS)以及光伏(PV)能量产生,以及非关键负载脱落。 EMS利用智能感测策略收集诸如实时能耗和生成以及温度,风速和辐照度的环境参数,其中可以记录测量,并且可以在本地和云中进行计算。在西班牙电力市场内,应用双关税定价,每台安装的每年节省电池供电16.8欧元/千瓦。该系统具有可应用于新的和现有安装,提供与电网,光伏生成,智能测量系统和必要管理软件的双向连接。所有这些功能都集成在灵活和低成本的HW / SW架构中。最后,通过在试验工厂和不同天气条件下进行的真实测试验证整个系统。

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