论文标题
多能系统的深度脱碳:具有跨学科技术的面向碳的框架
Deep Decarbonization of Multi-Energy Systems: A Carbon-Oriented Framework with Cross Disciplinary Technologies
论文作者
论文摘要
未减弱的煤炭发电厂的退休,可再生能源技术的下降成本以及更具侵略性的公共政策和监管改革,以空前的速度进行,以将功率和能源系统脱碳,以实现2030年和2050年气候目标。本文旨在建立一个面向碳的框架,以检查碳发射在迅速过渡到集成的多能系统的功率网络中扮演的角色。我们将多能系统中的碳流量分为三个阶段:碳津贴初始化/分配,交换/定价和循环。然后,我们讨论跨学科技术(例如游戏理论,优化和机器学习)如何促进对拟议框架的建模和分析。
The retirement of unabated coal power plants, the plummeting cost of renewable energy technologies, along with more aggressive public policies and regulatory reforms, are occurring at an unprecedented speed to decarbonize the power and energy systems towards the 2030 and 2050 climate goals. This article aims to establish a carbon-oriented framework to examine the role carbon emission is playing within a power grid that is rapidly transitioning to an integrated multi-energy system. We divide the carbon flows in the multi-energy systems into three stages: carbon allowances initialization/allocation, exchanging/pricing, and circulation. Then, we discuss how cross-disciplinary technologies, such as game theory, optimization, and machine learning can facilitate the modeling and analysis of the proposed framework.