通过碳排放流量追踪,以低碳为导向规划配电网中的共享光伏和储能系统

IF 5 2区 工程技术 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC International Journal of Electrical Power & Energy Systems Pub Date : 2024-07-10 DOI:10.1016/j.ijepes.2024.110126
Lei Chen , Wei Tang , Zhaoqi Wang , Lu Zhang , Fang Xie
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引用次数: 0

摘要

随着碳调峰和碳中和目标的实现,碳减排措施已成为新型电力系统的重要问题。多电源和灵活负载接入的配电网络(DN)在挖掘需求侧碳减排潜力方面发挥着至关重要的作用。为了实现全球碳减排,考虑到每个用户的碳配额,共享光伏(PV)和储能系统(ESS)的分配由 DNs 进行集中计算和优化。为了解决配电网中共享光伏和储能系统需求侧规划的两个关键点,即碳排放流量(CEF)计算的准确性和以碳配额为导向的优化规划,本文提出了一种通过CEF追踪的以低碳为导向的共享光伏和储能系统规划方法。首先,基于正向电流扫描和反向电压扫描算法,考虑无功功率和功率损耗的跟踪,提出了一种新颖的 CEF 计算方法。接着,定义了分配共享光伏和 ESS 的碳排放指标和经济指标。随后,在碳核算和碳配额的基础上,考虑了各负载的超额碳排放量,提出了一个双层优化模型。最后,通过修改后的 IEEE 33 节点配电网络验证了所提方法的优越性,并讨论了各种投资约束和碳配额的影响。
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Low-carbon oriented planning of shared photovoltaics and energy storage systems in distribution networks via carbon emission flow tracing

With the targets of carbon peaking and carbon neutrality, carbon emission reduction measures have become significant issues in new-type power systems. Distribution networks (DNs), which multiple power sources and flexible loads access to, play an essential role in exploiting the potential of reducing carbon emissions on the demand side. To achieve a global carbon emission reduction considering the carbon quota of each customer, shared photovoltaics (PVs) and energy storage systems (ESSs) are allocated with a centralized calculation and optimization conducted by DNs. To solve two key points in demand-side planning of shared PVs and ESSs in distribution networks, i.e., the accuracy of carbon emission flow (CEF) calculation and carbon quota-oriented optimization planning, this paper proposes a low-carbon oriented planning method for shared PVs and ESSs via CEF tracing. Firstly, a novel CEF calculation method is proposed based on the forward current sweep and backward voltage sweep algorithm, which considers the tracing of reactive power and power losses. Next, carbon emission index and economic index of allocating shared PVs and ESSs are defined. Subsequently, a bi-level optimization model is presented, considering the excess carbon emissions of each load based on carbon accounting and carbon quotas. Finally, the superiority of the proposed method is verified through a modified IEEE 33-node distribution network, and the effects of various investment constraints and carbon quotas are discussed.

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来源期刊
International Journal of Electrical Power & Energy Systems
International Journal of Electrical Power & Energy Systems 工程技术-工程:电子与电气
CiteScore
12.10
自引率
17.30%
发文量
1022
审稿时长
51 days
期刊介绍: The journal covers theoretical developments in electrical power and energy systems and their applications. The coverage embraces: generation and network planning; reliability; long and short term operation; expert systems; neural networks; object oriented systems; system control centres; database and information systems; stock and parameter estimation; system security and adequacy; network theory, modelling and computation; small and large system dynamics; dynamic model identification; on-line control including load and switching control; protection; distribution systems; energy economics; impact of non-conventional systems; and man-machine interfaces. As well as original research papers, the journal publishes short contributions, book reviews and conference reports. All papers are peer-reviewed by at least two referees.
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