Proactive Scheduling of Mixed Energy Resources At Different Grid Levels

被引:0
|
作者
Efkarpidis, Nikolaos [1 ]
Imoscopi, Stefano [2 ]
Bratukhin, Aleksey [3 ]
Brannvall, Rickard [4 ]
Franzl, Gerald [3 ]
Leopold, Thomas [5 ]
Bauer, Valentin [5 ]
Goranovic, Andrija [5 ]
Wilker, Stefan [5 ]
Yang, Chen-Wei [6 ]
Gustafsson, Jonas [4 ]
Geidl, Martin [1 ]
Sauter, Thilo [5 ,7 ]
机构
[1] Univ Appl Sci & Arts Northwestern Switzerland FHNW, Inst Elect Power Syst, CH-5210 Windisch, Switzerland
[2] Univ Svizzera Italiana USI, Dalle Molle Inst Artificial Intelligence IDSIA, CH-6962 Lugano, Switzerland
[3] Univ Continuing Educ Krems, Ctr Distributed Syst & Sensor Networks, Dept Integrated Sensor Syst, A-2700 Wiener Neustadt, Austria
[4] Res Inst Sweden RISE, S-97347 Lulea, Sweden
[5] TU Wien, Inst Comp Technol, Energy&IT Grp, A-1040 Vienna, Austria
[6] Lulea Univ Technol LTU, Dept Comp Sci Elect & Space Engn, S-97187 Lulea, Sweden
[7] Univ Continuing Educ Krems, Ctr Distributed Syst & Sensor Networks, Dept Integrated Sensor Syst, A-2700 Wiener Neustadt, Austria
基金
欧盟地平线“2020”;
关键词
Transformers; Energy management; Costs; Predictive models; Stakeholders; Energy resources; Uncertainty; Bi-level energy management framework; cost savings; DER; deterministic; lower level controller; MPC; robust; RBC; upper level controller;
D O I
10.1109/TSTE.2023.3320055
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The optimal utilisation of distribution grids requires the proactive management of volatilities caused by mixed energy resources installed into different grid levels, such as buildings, energy communities (ECs) and substations. In this context, proactive control based on predictions for energy demand and generation is applied. The mitigation of conflicts between the stakeholders' objectives is the main challenge for the control of centralized and distributed energy resources. In this article, a bi-level approach is proposed for the control of stationary battery energy storage systems (SBES) supporting the local distribution system operator (DSO) at the transformer level, as well as distributed energy resources (DERs) operated by end customers, i.e., EC-members. Model predictive control (MPC)-based and hybrid approaches merging rule- and MPC-based control schemes are evaluated. Simulation studies based on a typical European low voltage (LV) feeder topology yield the performance assessment in terms of technical and economic criteria. The results show an advantage of hybrid approaches with respect to the DSO's cost savings from peak shaving. From the EC's perspective, both hybrid and MPC-based schemes can achieve effective cost savings from proactive energy management.
引用
收藏
页码:952 / 963
页数:12
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