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Enabling Micro-level Demand-Side Grid Flexiblity in Resource Constrained Environments

机译:在资源受限环境中启用微级需求侧网格柔性强度

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The increased penetration of uncertain and variable renewable energy presents various resource and operational electric grid challenges. Micro-level (household and small commercial) demand-side grid flexibility could be a cost-effective strategy to integrate high penetrations of wind and solar energy, but literature and field deployments exploring the necessary information and communication technologies (ICTs) are scant. This paper presents an exploratory framework for enabling information driven grid flexibility through the Internet of Things (IoT), and a proof-of-concept wireless sensor gateway (FlexBox) to collect the necessary parameters for adequately monitoring and actuating the micro-level demand-side. In the summer of 2015, thirty sensor gateways were deployed in the city of Managua (Nicaragua) to develop a baseline for a near future small-scale demand response pilot implementation. FlexBox field data has begun shedding light on relationships between ambient temperature and load energy consumption, load and building envelope energy efficiency challenges, latency communication network challenges, and opportunities to engage existing demand-side user behavioral patterns. Information driven grid flexibility strategies present great opportunity to develop new technologies, system architectures, and implementation approaches that can easily scale across regions, incomes, and levels of development.
机译:不确定的和可变可再生能源呈现增加的穿透各种资源和运营电网的挑战。微观层面(家庭和小型商业)需求方电网的灵活性可以整合风能和太阳能,但文学和现场部署探索必要的信息和通信技术(ICT)是很少的高穿透具有成本效益的战略。本文提出了通过物联网(IOT)的使能信息驱动网格灵活性探索框架,并证明了概念的无线传感器网关(Flexbox的),以收集必要的参数适当地监测和致动所述微级别需求 - 边。在2015年夏天,三十传感器网关部署在城市马那瓜(尼加拉瓜)的开发不久的将来,小规模的需求响应试点实施的基准。 Flexbox的字段数据已经开始环境温度和负载的能量消耗,负载和围护能量效率的挑战,时延通信网络的挑战和机会参与现有需求方用户的行为模式之间的关系的脱落光。信息驱动的电网灵活策略,提出开发新技术,系统架构很好的机会,和实施办法,可以轻松地在地区,收入和发展水平的规模。

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