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Technology Planning for Aligning Emerging Business Models and Regulatory Structures: The Case of Electric Vehicle Charging and the Smart Gridrid

机译:调整新兴业务模型和监管结构的技术规划:以电动汽车充电和智能电网为例

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摘要

Smart grid has been described as the Energy Internet: Where Energy Technology meets Information Technology. The incorporation of such technology into vast existing utility infrastructures offers many advantages, including possibilities for new smart appliances, energy management systems, better integration of renewable energy, value added services, and new business models, both for supply- and demand-side management. Smart grid also replaces aging utility technologies that are becoming increasingly unreliable, as the average ages for many critical components in utility systems now exceed their original design lives. However, while smart grid offers the promise of revolutionizing utility delivery systems, many questions remain about how such systems can be rolled out at the state, regional, and national levels. Many unique regulatory and market structure challenges exist, which makes it critical to pick the right technology for the right situation and to employ it in the right manner. Technology Roadmapping may be a valuable approach for helping to understand factors that could affect smart grid technology and product development, as well as key business, policy and regulatory drivers. As emerging smart grid technologies are developed and the fledgling industry matures, a critical issue will be understanding how the combination of industry drivers impact one another, what barriers exist to achieving the benefits of smart grid technologies, and how to prioritize R&D; and acquisition efforts. Since the planning of power grids often relies on regional factors, it will also be important investigate linkages between smart grid deployment and regional planning goals. This can be used to develop strategies for overcoming barriers and achieving the benefits of this promising new technology. This research builds upon existing roadmapping processes by considering an integrated set of factors, including policy issues, which are specifically tuned to the needs of smart grids and have not generally been considered in other types of roadmapping efforts. It will also incorporate expert judgment quantification to prioritize factors, show the pathways for overcoming barriers and achieving benefits, and discussing the most promising strategies for achieving these goals.
机译:智能电网已被描述为能源互联网:能源技术与信息技术的结合。将此类技术整合到庞大的现有公用事业基础设施中可提供许多优势,包括开发新的智能电器,能源管理系统,更好地整合可再生能源,增值服务以及用于供需侧管理的新业务模型。智能电网还取代了越来越不可靠的老化公用事业技术,因为公用事业系统中许多关键组件的平均寿命现在已超过其原始设计寿命。然而,尽管智能电网有望为公用事业交付系统带来革命性的变化,但是关于如何在州,地区和国家层面推出这样的系统,仍然存在许多问题。存在许多独特的监管和市场结构挑战,这使得在正确的情况下选择正确的技术并以正确的方式使用它至关重要。技术路线图可能是帮助理解可能影响智能电网技术和产品开发的因素以及关键业务,政策和法规驱动因素的宝贵方法。随着新兴智能电网技术的发展和新兴行业的成熟,一个关键问题将是了解行业驱动因素的组合如何相互影响,实现智能电网技术的收益存在哪些障碍以及如何优先考虑研发;和获取努力。由于电网规划通常取决于区域因素,因此研究智能电网部署与区域规划目标之间的联系也很重要。这可以用来制定策略来克服障碍并实现这一有前途的新技术的收益。这项研究基于现有的制图过程,考虑了一系列综合因素,包括政策问题,这些因素专门针对智能电网的需求进行了调整,而其他类型的制图工作中通常没有考虑这些因素。它还将结合专家判断量化以优先考虑因素,显示克服障碍和实现收益的途径,并讨论实现这些目标的最有希望的战略。

著录项

  • 作者

    Cowan, Kelly R.;

  • 作者单位

    Portland State University.;

  • 授予单位 Portland State University.;
  • 学科 Engineering.;Management.;Alternative Energy.;Information technology.
  • 学位 Ph.D.
  • 年度 2017
  • 页码 393 p.
  • 总页数 393
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:38:46

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