4.7 Article

Key technologies for smart energy systems: Recent developments, challenges, and research opportunities in the context of carbon neutrality

期刊

JOURNAL OF CLEANER PRODUCTION
卷 331, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.jclepro.2021.129809

关键词

Smart energy system; Carbon neutrality; New power system; Demand response; Energy management; Energy storage; Zero-carbon emission; Digital-energy market

资金

  1. National Natural Science Foundation of China [5210071288]
  2. National Key Research and Development Program of China [2019YFE0118000]
  3. Key Laboratory of Special Machine and High Voltage Apparatus Shenyang University of Technology, Ministry of Education, China [KFKT202006]

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The energy crisis and environmental pollution have accelerated the transition of the energy system, with global use of low carbon energy increasing. Smart energy systems have received significant support and development to promote smart city development and achieve carbon neutrality goals. This research provides a comprehensive analysis of six important technologies in smart energy systems, including their performance features, application status, and challenges. It also explores the ten key obstacles and four opportunities in developing smart energy systems. The purpose of this research is to advance the creation of smart energy systems and promote sustainable development.
Energy crisis and environmental pollution have expedited the transition of the energy system. Global use of low carbon energy has increased from 1:6.16 to 1:5.37. Smart energy systems have received significant support and development to accelerate the development of smart cities and achieve the carbon neutrality goal. As a result of analyzing recent related publications and weighing their merits and downsides, it is determined that a more comprehensive and objective analysis of the main technologies underlying smart energy systems is necessary for the context of the new era. We report thoroughly on the six important hotspot technologies in smart energy systems, and undertake a comparative analysis of each technology's performance features, application status, and challenges. The ten key obstacles to developing a smart energy system are examined in terms of technology constraints, the social environment, human survival, and extreme climate circumstances. The four opportunities that smart energy systems confront in the digital age are examined in terms of governmental support, technology innovation, and public participation. The purpose of this research is to advance the creation of smart energy systems and the sustainable development of society in two ways: i) Smart energy system research should begin with a combination of technological innovation and practical application; ii) Key technologies in smart energy systems should consider the needs of people's livelihoods to evolve in a more intelligent and diverse path.

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