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Towards Integrating Distributed Energy Resources and Storage Devices in Smart Grid

机译:致力于在智能电网中整合分布式能源和存储设备

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摘要

Internet of Things (IoT) provides a generic infrastructure for different applications to integrate information communication techniques with physical components to achieve automatic data collection, transmission, exchange, and computation. The smart grid, as one of typical applications supported by IoT, denoted as a re-engineering and a modernization of the traditional power grid, aims to provide reliable, secure, and efficient energy transmission and distribution to consumers. How to effectively integrate distributed (renewable) energy resources and storage devices to satisfy the energy service requirements of users, while minimizing the power generation and transmission cost, remains a highly pressing challenge in the smart grid. To address this challenge and assess the effectiveness of integrating distributed energy resources and storage devices, in this paper we develop a theoretical framework to model and analyze three types of power grid systems: the power grid with only bulk energy generators, the power grid with distributed energy resources, and the power grid with both distributed energy resources and storage devices. Based on the metrics of the power cumulative cost and the service reliability to users, we formally model and analyze the impact of integrating distributed energy resources and storage devices in the power grid. We also use the concept of network calculus, which has been traditionally used for carrying out traffic engineering in computer networks, to derive the bounds of both power supply and user demand to achieve a high service reliability to users. Through an extensive performance evaluation, our data shows that integrating distributed energy resources conjointly with energy storage devices can reduce generation costs, smooth the curve of bulk power generation over time, reduce bulk power generation and power distribution losses, and provide a sustainable service reliability to users in the power grid.
机译:物联网(IoT)为不同的应用程序提供了通用的基础架构,以将信息通信技术与物理组件集成在一起,以实现自动数据收集,传输,交换和计算。智能电网作为物联网支持的典型应用之一,被称为传统电网的重新设计和现代化,旨在为消费者提供可靠,安全,高效的能源传输和分配。如何有效地集成分布式(可再生)能源和存储设备,以满足用户的能源服务需求,同时最大程度地减少发电和输电成本,仍然是智能电网中的紧迫挑战。为了解决这一挑战并评估集成分布式能源和存储设备的有效性,在本文中,我们开发了一个理论框架来对三种类型的电网系统进行建模和分析:仅具有散装能源发生器的电网,具有分布式能源的电网能源,以及具有分布式能源和存储设备的电网。基于电能累计成本和对用户的服务可靠性的指标,我们正式建模并分析了将分布式能源和存储设备集成到电网中的影响。我们还使用网络演算的概念(该演算传统上用于计算机网络中的流量工程)来推导电源和用户需求的界限,以实现对用户的高服务可靠性。通过广泛的性能评估,我们的数据表明,将分布式能源与储能设备结合在一起可以降低发电成本,平滑大功率发电随时间变化的曲线,减少大功率发电和配电损耗,并为设备提供可持续的服务可靠性电网中的用户

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