Fast Frequency Regulation Support by LED Street Lighting Control

被引:5
作者
Bruno, Sergio [1 ]
Giannoccaro, Giovanni [1 ]
Iurlaro, Cosimo [1 ]
La Scala, Massimo [1 ]
Rodio, Carmine [1 ]
Sbrizzai, Roberto [1 ]
机构
[1] Politecn Bari, Dept Elect & Informat Engn DEI, Bari, Italy
来源
2021 21ST IEEE INTERNATIONAL CONFERENCE ON ENVIRONMENT AND ELECTRICAL ENGINEERING AND 2021 5TH IEEE INDUSTRIAL AND COMMERCIAL POWER SYSTEMS EUROPE (EEEIC/I&CPS EUROPE) | 2021年
关键词
Power Hardware-in-the-Loop; virtual inertia; power electronic interfaced power sources; fast frequency response; microgrids; street lighting; ancillary services; SYNTHETIC INERTIA; LOADS;
D O I
10.1109/EEEIC/ICPSEurope51590.2021.9584577
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
The replacement of conventional power plants with Distributed Energy Resources (DERs) is reducing total system inertia. As a consequence, frequency deviations induced from power supply-demand imbalances increase with DERs penetrations. In the future years, grid services such as frequency regulation support will be provided by means of distributed generators, prosumers and controllable loads, in order to ensure the power system reliability. LED lamps of road lighting systems represent an interesting case of controllable loads since they are widespread in smart cities and can be regulated by means of local or remote control signals. This paper investigates the possibility to regulate the power consumption of lighting street systems to provide frequency support. Power Hardware-in-the-Loop (PHIL) simulations with an actual LED street lamp have been carried out in order to validate the proposed control strategy. Test results and final conclusions are provided.
引用
收藏
页数:6
相关论文
共 29 条
[1]  
[Anonymous], 2016, IEEE T IND ELECTRON
[2]  
Bandopadhyay S, 2016, 2016 INTERNATIONAL CONFERENCE ON INTELLIGENT CONTROL POWER AND INSTRUMENTATION (ICICPI), P221, DOI 10.1109/ICICPI.2016.7859706
[3]   Design and Implementation of a Variable Synthetic Inertia Controller for Wind Turbine Generators [J].
Bonfiglio, Andrea ;
Invernizzi, Marco ;
Labella, Alessandro ;
Procopio, Renato .
IEEE TRANSACTIONS ON POWER SYSTEMS, 2019, 34 (01) :754-764
[4]  
Bruno S., 2020, PROC IEEE INT C ENV, P1
[5]  
Bruno S, 2019, 2019 IEEE INTERNATIONAL CONFERENCE ON ENVIRONMENT AND ELECTRICAL ENGINEERING AND 2019 IEEE INDUSTRIAL AND COMMERCIAL POWER SYSTEMS EUROPE (EEEIC / I&CPS EUROPE)
[6]  
Chamorro HR, 2020, PROC IEEE INT SYMP, P816, DOI [10.1109/ISIE45063.2020.9152448, 10.1109/isie45063.2020.9152448]
[7]   Power System Frequency Response From the Control of Bitumen Tanks [J].
Cheng, Meng ;
Wu, Jianzhong ;
Galsworthy, Stephen J. ;
Ugalde-Loo, Carlos E. ;
Gargov, Nikola ;
Hung, William W. ;
Jenkins, Nick .
IEEE TRANSACTIONS ON POWER SYSTEMS, 2016, 31 (03) :1769-1778
[8]   A novel direct air-conditioning load control method [J].
Chu, Chi-Min ;
Jong, Tai-Lang .
IEEE TRANSACTIONS ON POWER SYSTEMS, 2008, 23 (03) :1356-1363
[9]  
Conte F., 2019, 2019 IEEE INT C ENV
[10]   Synthetic inertia versus fast frequency response: a definition [J].
Eriksson, Robert ;
Modig, Niklas ;
Elkington, Katherine .
IET RENEWABLE POWER GENERATION, 2018, 12 (05) :507-514