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A Communication Protocol for Nanogrids and its Application in Off-Grid Rural Areas of Developing Countries.

机译:纳米电网通信协议及其在发展中国家离网农村地区的应用。

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摘要

In a developing country such as India, 44% of the population does not have access to power and for many others, the power supply is unreliable. A nanogrid, defined as "a single domain for voltage, reliability and administration", is a possible solution to distribute power to such off-grid areas. Built from the bottom up, nanogrids have the ability to function independently, using locally generated power (such as solar power) as the power source. Such grids enable residents to lead more productive lives, with improved access to power. This thesis designs a new communication protocol for nanogrids to enable matching demand to short-term limited supply.;A review of the existing local grid projects in off-grid areas in developing countries is covered -- outlining the cost per kWh incurred by the customer, the communications (if any) defined in each local grid and the supply duration of the local grid. A communication protocol for a nanogrid is presented, defining a list of messages required to enable communication and the use of the Link Layer Discovery Protocol (LLDP) to implement this list. A simulation evaluation of a nanogrid deployed in an off-grid rural area of a developing country is presented. Keeping three distinct days -- a sunny, cloudy and rainy day and three months -- summer, monsoon and winter in mind, we demonstrate how communication about the local power price of the nanogrid can be used to modulate demand in connected loads, matching present demand with short-term limited supply.;Simulation results show that the nanogrid model with communication enabled results in ~95% reduction in unmet demand for the month of December with an initial battery level of 20% (the worst case scenario). These results indicate that a grid can distribute adequate power to the loads attached to it for a month in different seasons. Such a grid, with communication about power can have a great impact in developing countries, where reduced power supply or a brownout is preferred to no power supply or a blackout.
机译:在印度这样的发展中国家,有44%的人口无法获得电力,而对于许多其他国家来说,电力供应是不可靠的。定义为“电压,可靠性和管理的单个域”的纳米电网是将功率分配到此类离网区域的可能解决方案。自下而上构建而成的纳米电网具有使用本地产生的电力(例如太阳能)作为动力源的独立功能。这样的电网使居民能够改善生产生活,并获得更多的电力。本文为纳米电网设计了一种新的通信协议,以使需求与短期有限的供应相匹配。;涵盖了发展中国家离网地区现有的当地电网项目的回顾-概述了客户每千瓦时的成本,在每个本地电网中定义的通信(如果有)以及本地电网的供电时间。提出了用于纳米网格的通信协议,该协议定义了启用通信所需的消息列表以及使用链路层发现协议(LLDP)来实现此列表。提出了在发展中国家离网农村地区部署的纳米电网的仿真评估。牢记三个不同的日子-晴天,阴天和雨天以及三个月-夏季,季风和冬季,我们演示了如何使用有关纳米电网本地电价的信息来调节连接负载中的需求,并与之匹配仿真结果表明,启用通讯的纳米网格模型可以使12月份的未满足需求减少约95%,初始电池电量为20%(最坏的情况)。这些结果表明,电网可以在不同季节的一个月内向与其连接的负载分配足够的功率。这样的电网,可以交流有关电力的信息,对发展中国家产生巨大的影响,在这些国家中,减少供电或停电比没有供电或停电更为可取。

著录项

  • 作者

    Srikanth, Sowmya.;

  • 作者单位

    University of South Florida.;

  • 授予单位 University of South Florida.;
  • 学科 Computer science.
  • 学位 M.S.C.S.
  • 年度 2016
  • 页码 93 p.
  • 总页数 93
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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