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Enabling Communication and Networking Technologies for Smart Grid

机译:为智能电网启用通信和联网技术

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摘要

This dissertation has two major contributions. First, a hierarchically distributed non- intrusive Agent Aided Distance Relaying Protection Scheme (AADRPS) is proposed to im- prove the robustness of distance relays to hidden failures. The problem of adapting the proposed AADRPS to a larger power system network consisting of thousands of buses is modeled as an integer linear programming multiple facility location optimization problem. Distance relaying protection scheme is a real time system and has stringent timing require- ments. Therefore, in order to verify if the proposed AADRPS meets the timing requirements or not and also to check for deadlocks, verification models based on UPPAAL real time model checker are provided in this dissertation. So, the entire framework consisting of AADRPS that aids in increasing the robustness of distance relays and reducing the possibility of black- outs, the multiple facility location optimization models and the UPPAAL real time model checker verification models form one of the major contributions of this dissertation.;The second contribution is related to the MAC layer of AMI networks. In this dissertation, FLEX-MAC - a novel and flexible MAC protocol is proposed to reduce the overhead and latency in smart meter data collection. The novelty of the FLEX-MAC lies in its ability to change the mode of operation based on the type of the data being collected in a smart meter network. FLEX-MAC employs Frame and Channel Reserved (FCR) MAC or Frame Reserved and Random Channel (FRRC) MAC for scheduled data collection. Power outage data in an AMI network is considered as a random data . In a densely populated area, during an outage, a large number of smart meters attempt to report the outage, which significantly increases the Random Access CHannel (RACH) load. In order to reduce the RACH traffic during an outage, this dissertation proposes a Time Hierarchical Scheme (THS). Also, in order to minimize the total time to collect the power outage data, a Backward Recursive Dynamic Programming (BRDP) approach is proposed to adapt the transmission rate of smart meters reporting an outage. Both the Optimal Transmission Rate Adaption and Time Hierarchical Scheme form the basis of OTRA-THS MAC which is employed by FLEX-MAC for random data collection. Additionally, in this work, Markov chain models are presented for evaluating the performance of FCR and FRRC MACs in terms of average throughput and delay. Also, another Markov model is presented to find the mean time to absorption or mean time to collect power outage data of OTRA-TH MAC during an outage. (Abstract shortened by ProQuest.).
机译:本论文有两个主要贡献。首先,提出了一种分层分布的非侵入式智能体辅助距离中继保护方案(AADRPS),以提高距离中继对隐藏故障的鲁棒性。使拟议的AADRPS适应由数千个总线组成的更大的电力系统网络的问题被建模为整数线性规划多设施位置优化问题。距离继电保护方案是一种实时系统,对时间要求严格。因此,为了验证所提出的AADRPS是否满足时序要求并检查死锁,本文提供了基于UPPAAL实时模型检查器的验证模型。因此,由AADRPS组成的,有助于提高距离继电器的鲁棒性并减少停电的可能性的整个框架,多个设施位置优化模型和UPPAAL实时模型检查器验证模型构成了本论文的主要贡献之一。第二个贡献与AMI网络的MAC层有关。本文提出了一种新颖,灵活的MAC协议FLEX-MAC,以减少智能电表数据采集的开销和时延。 FLEX-MAC的新颖之处在于它能够根据智能电表网络中收集的数据类型来更改操作模式。 FLEX-MAC使用帧和通道保留(FCR)MAC或帧保留和随机通道(FRRC)MAC进行计划的数据收集。 AMI网络中的停电数据被视为随机数据。在人口稠密的地区,停电期间,大量智能电表试图报告停电,这显着增加了随机接入信道(RACH)的负载。为了减少停运期间的RACH流量,本文提出了一种时间分层方案。另外,为了使收集停电数据的总时间最小化,提出了一种后向递归动态规划(BRDP)方法,以适应报告停电的智能电表的传输速率。最佳传输速率自适应和时间分层方案均构成了OTRA-THS MAC的基础,OTRA-THS MAC被FLEX-MAC用于随机数据收集。此外,在这项工作中,提出了马尔可夫链模型,用于根据平均吞吐量和延迟评估FCR和FRRC MAC的性能。此外,提出了另一个马尔可夫模型,以查找中断期间OTRA-TH MAC的平均吸收时间或平均时间来收集电源中断数据。 (摘要由ProQuest缩短。)。

著录项

  • 作者

    Garlapati, Shravan.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Computer engineering.;Electrical engineering.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 181 p.
  • 总页数 181
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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