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面向城市能源社区互操作智能微电网的通信技术:现状、挑战和研究展望综述。

Communication Technologies for Interoperable Smart Microgrids in Urban Energy Community: A Broad Review of the State of the Art, Challenges, and Research Perspectives.

机构信息

School of Electronics Engineering, VIT-AP University, Amaravati 522237, Andhra Pradesh, India.

出版信息

Sensors (Basel). 2022 Aug 6;22(15):5881. doi: 10.3390/s22155881.

Abstract

In modern urban energy communities, diverse natured loads (homes, schools, hospitals, malls, etc.) are situated in the same locality and have self-electricity generation/management facilities. The power systems of these individual buildings are called smart microgrids. Usually, their self-electricity generation is based on renewable energy sources, which are uncertain due to their environmental dependency. So, the consistency of self-energy generation throughout the day is not guaranteed; thus, the dependency on the central utility grid is continued. To solve this, researchers have recently started working on interoperable smart microgrids (ISMs) for urban communities. Here, a central monitoring and control station captures the energy generation/demand information of each microgrid and analyzes the availability/requirement, thereby executing the energy transactions among these ISMs. Such local energy exchanges among the ISMs reduce the issues with uncertain renewable energy and the dependency on the utility grid. To establish such useful ISMs, a well-established communication mechanism has to be adopted. In this view, this paper first reviews various state-of-the-art developments related to smart grids and then provides extensive insights into communication standards and technologies, issues/challenges, and future research perspectives for ISM implementation. Finally, a discussion is presented on advanced wireless technology, called LoRa (Long Range), and a modern architecture using the LoRa technology to establish a communication network for ISMs is proposed.

摘要

在现代城市能源社区中,各种性质的负载(家庭、学校、医院、商场等)位于同一地点,并配备自备发电/管理设施。这些建筑物的电力系统被称为智能微电网。通常,它们的自备发电基于可再生能源,由于其对环境的依赖,这些能源具有不确定性。因此,不能保证全天的自备发电一致性,因此仍然依赖中央公用事业电网。为了解决这个问题,研究人员最近开始研究用于城市社区的互操作智能微电网 (ISM)。在这里,中央监控和控制站获取每个微电网的发电/需求信息,并分析可用性/需求,从而在这些 ISM 之间执行能源交易。这种 ISM 之间的本地能源交换减少了不确定的可再生能源和对公用事业电网的依赖的问题。为了建立这样有用的 ISM,必须采用成熟的通信机制。有鉴于此,本文首先回顾了与智能电网相关的各种最新发展,然后深入探讨了 ISM 实施的通信标准和技术、问题/挑战以及未来研究方向。最后,讨论了一种称为 LoRa(远距离)的先进无线技术,并提出了一种使用 LoRa 技术建立 ISM 通信网络的现代架构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c33/9371433/0831c275046c/sensors-22-05881-g001.jpg

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