Voltage Optimization in MV Network with Distributed Generation Using Power Consumption Control in Electrolysis Installations

被引:11
|
作者
Pijarski, Pawel [1 ]
Kacejko, Piotr [1 ]
机构
[1] Lublin Univ Technol, Fac Elect Engn & Comp Sci, Dept Power Engn, Nadbystrzycka St 38D, PL-20618 Lublin, Poland
关键词
voltage control; voltage quality; renewable energy; power to gas; electrolysis; hydrogen; ENERGY-STORAGE SYSTEM; TO-GAS SYSTEMS; RENEWABLE ENERGY; WATER ELECTROLYSIS; ELECTRICITY; HYDROGEN; TECHNOLOGIES; ALGORITHM; PLANTS; PILOT;
D O I
10.3390/en14040993
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Connecting a large number of distributed sources to the medium and low voltage grid poses many problems. The most important of these are the voltage changes inside the network, what can be observed when the power flow from these sources towards the HV/MV (High Voltage/Medium Voltage) transformer station. In particular, if the power consumption in nodes of the MV network is small and the distance between the place of installation of the source and the substation is large, increases and changes in voltage may be dangerous for the insulation of the network and burdensome for the consumers connected to it. The solution most frequently used to control voltage increases is the appropriate setting of the controller that affects the on-load tap changer of the MV/HV or even MV/LV (Medium Voltage/Low Voltage) transformer. It is also possible to regulate the reactive power of the sources and, of course, to limit their generated active power (curtailment of generation). The development of energy storage technology has made it possible to introduce consumers into the network, whose power can be controlled in a wide range. The article proposes the concept of an innovative voltage control system in the MV network, whose output values are three groups of parameters: HV/MV transformer ratio, reactive power of sources and active power of consumers connected in generation nodes. In the technological sense, it has been assumed that the loads are installations of electrolyzers used to produce "green hydrogen", according to the P2G (Power to Gas) formula. The tests consisting in the execution of several hundred calculation cycles for the IEEE 37 test network, using the Monte Carlo simulation, have shown that the subordination of the hydrogen production process to the objectives of voltage control in the MV network clearly contributes to stabilizing its value, while meeting the technological requirements. The control variables of the proposed control system are the result of the optimization algorithm described in the article, the function of which is the quality of network voltage.
引用
收藏
页数:21
相关论文
共 50 条
  • [31] Distributed photovoltaic reactive power affine adjustable robust optimization method for voltage control of a distribution network
    Li, Xiaoming
    Liu, Xiangyu
    Li, Anchang
    Liu, Yongchao
    [J]. Dianli Xitong Baohu yu Kongzhi/Power System Protection and Control, 2021, 49 (12): : 124 - 131
  • [32] Decentralized Control of Distributed Generation for Voltage Profile Optimization in Smart Feeders
    Di Fazio, Anna R.
    Fusco, Giuseppe
    Russo, Mario
    [J]. IEEE TRANSACTIONS ON SMART GRID, 2013, 4 (03) : 1586 - 1596
  • [33] Network voltage controller for distributed generation
    Hird, CM
    Leite, H
    Jenkins, N
    Li, H
    [J]. IEE PROCEEDINGS-GENERATION TRANSMISSION AND DISTRIBUTION, 2004, 151 (02) : 150 - 156
  • [34] Analysis of distributed power sources impact on distribution network voltage and reactive power optimization
    Gai Di
    Lv Jiaolong
    Su Yu
    Liu Chuanbo
    Li Yan
    He Lishuai
    Zhu Wenjia
    Tong Yongquan
    Shi Boyu
    Chen Hui
    Hou Gang
    Zhao Yuejun
    [J]. 2020 4TH INTERNATIONAL WORKSHOP ON RENEWABLE ENERGY AND DEVELOPMENT (IWRED 2020), 2020, 510
  • [35] Voltage control in distributed generation systems based on complex network approach
    Amani, Ali Moradi
    Gaeini, Nozhatalzaman
    Jalili, Mahdi
    Yu, Xinghuo
    [J]. 1ST INTERNATIONAL CONFERENCE ON ENERGY AND POWER, ICEP2016, 2017, 110 : 334 - 339
  • [36] Implications for Voltage Control with Increased Distributed Generation on Interconnected Power Networks
    Thwaites, Daniel P.
    Vagapov, Yuriy
    [J]. PROCEEDINGS OF THE 2021 IEEE CONFERENCE OF RUSSIAN YOUNG RESEARCHERS IN ELECTRICAL AND ELECTRONIC ENGINEERING (ELCONRUS), 2021, : 2747 - 2751
  • [37] Voltage and reactive power control in closed loop feeders with distributed generation
    Viawan, Ferry A.
    Karlsson, Daniel
    [J]. 2007 IEEE LAUSANNE POWERTECH, VOLS 1-5, 2007, : 549 - 554
  • [38] Optimization of Reactive Power and Voltage Control in Power System Using Hybrid Artificial Neural Network and Particle Swarm Optimization
    Kanata, Sabhan
    Sianipar, Gibson H. M.
    Maulidevi, Nur Ulfa
    [J]. 2018 2ND INTERNATIONAL CONFERENCE ON APPLIED ELECTROMAGNETIC TECHNOLOGY (AEMT), 2018, : 67 - 72
  • [39] A unified power quality conditioner for power quality improvement in distributed generation network using adaptive distributed power balanced control (ADPBC)
    Mohanraj, M. R.
    Prakash, R.
    [J]. INTERNATIONAL JOURNAL OF WAVELETS MULTIRESOLUTION AND INFORMATION PROCESSING, 2020, 18 (01)
  • [40] Voltage Control of Distribution Network with Photovoltaic Power Generation Systems
    Tao, Weiqing
    Fang, Cheng
    Lu, Shengqing
    Liu, Qingsong
    Lin, Rui
    [J]. 2018 3RD INTERNATIONAL CONFERENCE ON INTELLIGENT GREEN BUILDING AND SMART GRID (IGBSG 2018), 2018,