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  1. This paper proposes a novel deep reinforcement learning (DRL) control strategy for an integrated offshore wind and photovoltaic (PV) power system for improving power generation efficiency while simultaneously ...

    Authors: Xiuxing Yin and Meizhen Lei
    Citation: Protection and Control of Modern Power Systems 2023 8:25
  2. A fault identification scheme for protection and adaptive reclosing is proposed for a hybrid multi-terminal HVDC system to increase the reliability of fault isolation and reclosing. By analyzing the "zero pass...

    Authors: Junjie Hou, Guobing Song and Yanfang Fan
    Citation: Protection and Control of Modern Power Systems 2023 8:23
  3. With the rapid development of electrical power systems in recent years, microgrids (MGs) have become increasingly prevalent. MGs improve network efficiency and reduce operating costs and emissions because of t...

    Authors: Ahmed N. Sheta, Gabr M. Abdulsalam, Bishoy E. Sedhom and Abdelfattah A. Eladl
    Citation: Protection and Control of Modern Power Systems 2023 8:24
  4. The ongoing transformation of electrical power systems highlights the weaknesses of the protection schemes of traditional devices because they are designed and configured according to traditional characteristi...

    Authors: Juan Carlos Quispe, John Morales, Eduardo Orduna, Carlo Liebermann, Michael Bruhns and Peter Schegner
    Citation: Protection and Control of Modern Power Systems 2023 8:22
  5. Voltage imbalance (VI) is caused by the difference in connected single-phase load or generation in a low voltage distribution network (DN).VI increase in a smart distribution grid is due to the current practic...

    Authors: Ahmed M. M. Nour, Ahmed A. Helal, Magdi M. El-Saadawi and Ahmed Y. Hatata
    Citation: Protection and Control of Modern Power Systems 2023 8:20
  6. Thermostatically controlled loads (TCLs) are regarded as having potential to participate in power grid regulation. This paper proposes a scheduling strategy with three-stage optimization for regional aggregato...

    Authors: Dejin Fan, Shu Zhang, He Huang, Liping Zhou, Yang Wang and Xianyong Xiao
    Citation: Protection and Control of Modern Power Systems 2023 8:19
  7. Emerging sub-synchronous interactions (SSI) in wind-integrated power systems have added intense attention after numerous incidents in the US and China due to the involvement of series compensated transmission ...

    Authors: Neevatika Verma, Narendra Kumar, Saket Gupta, Hasmat Malik and Fausto Pedro García Márquez
    Citation: Protection and Control of Modern Power Systems 2023 8:17
  8. State estimation plays a vital role in the stable operation of modern power systems, but it is vulnerable to cyber attacks. False data injection attacks (FDIA), one of the most common cyber attacks, can tamper...

    Authors: Bairen Chen, Q. H. Wu, Mengshi Li and Kaishun Xiahou
    Citation: Protection and Control of Modern Power Systems 2023 8:16
  9. This paper demonstrates the controlling abilities of a large PV-farm as a Solar-PV inverter for mitigating the chaotic electrical, electromechanical, and torsional oscillations including Subsynchronous resonan...

    Authors: Sheetal Singh, Sanju Saini, S. K. Gupta and Rajeev Kumar
    Citation: Protection and Control of Modern Power Systems 2023 8:15
  10. In this paper, load frequency control is performed for a two-area power system incorporating a high penetration of renewable energy sources. A droop controller for a type 3 wind turbine is used to extract the ...

    Authors: Mahmoud Hussain El-Bahay, Mohammed Elsayed Lotfy and Mohamed A. El-Hameed
    Citation: Protection and Control of Modern Power Systems 2023 8:14
  11. The technological, economic, and environmental benefits of photovoltaic (PV) systems have led to their widespread adoption in recent years as a source of electricity generation. However, precisely identifying ...

    Authors: Saibal Manna, Ashok Kumar Akella and Deepak Kumar Singh
    Citation: Protection and Control of Modern Power Systems 2023 8:13
  12. The large application of renewable energy generation (REG) has increased the risk of cascading failures in the power system. At the same time REG also provides the possibility of new approaches for the suppres...

    Authors: Jinxin Ouyang, Jianfeng Yu, Xiaoxuan Long, Yanbo Diao and Jian Wang
    Citation: Protection and Control of Modern Power Systems 2023 8:12
  13. The challenge of controlling frequency becomes greater as the complexity of a power network increases. The stability of a power system is highly dependent upon the robustness of the controller. This paper pres...

    Authors: Muhammad Majid Gulzar
    Citation: Protection and Control of Modern Power Systems 2023 8:11
  14. The high proportion of nonlinear and unbalanced loads results in power quality issues in islanded microgrids. This paper presents a novel control strategy for harmonic and unbalanced power allocation among dis...

    Authors: Yang Wang, Junmiao Tang, Jiandong Si, Xianyong Xiao, Peter Zhou and Jinshuai Zhao
    Citation: Protection and Control of Modern Power Systems 2023 8:10
  15. In this paper, a Backstepping Global Integral Terminal Sliding Mode Controller (BGITSMC) with the view to enhancing the dynamic stability of a hybrid AC/DC microgrid has been presented. The proposed approach c...

    Authors: Tushar Kanti Roy, Subarto Kumar Ghosh and Sajeeb Saha
    Citation: Protection and Control of Modern Power Systems 2023 8:8
  16. Voltage instability is a serious phenomenon that can occur in a power system because of critical or stressed conditions. To prevent voltage collapse caused by such instability, accurate voltage collapse predic...

    Authors: Salah Mokred, Yifei Wang and Tiancong Chen
    Citation: Protection and Control of Modern Power Systems 2023 8:7
  17. In the presence of an MMC-HVDC system, current differential protection (CDP) has the risk of failure in operation under an internal fault. In addition, CDP may also incur security issues in the presence of cur...

    Authors: Yingyu Liang, Yi Ren, Jinhua Yu and Wenting Zha
    Citation: Protection and Control of Modern Power Systems 2023 8:6
  18. Data-driven preventive scanning for transient stability assessment (DTSA) is a faster and more efficient solution than time-domain simulation (TDS). However, most current methods cannot balance generalization ...

    Authors: Liukai Chen and Lin Guan
    Citation: Protection and Control of Modern Power Systems 2023 8:5
  19. To address the challenges in fault location in distribution networks, the distribution of magnetic field under overhead line and its relationship with three-phase currents are explored in this paper. At the sa...

    Authors: Xiaowei Wang, Huan Du, Jie Gao, Xiangxiang Wei, Zhenfeng Liang, Liang Guo and Weibo Liu
    Citation: Protection and Control of Modern Power Systems 2023 8:4
  20. This paper offers a systematic literature review of real-time detection and classification of Power Quality Disturbances (PQDs). A particular focus is given to voltage sags and notches, as voltage sags cause h...

    Authors: Joaquín E. Caicedo, Daniel Agudelo-Martínez, Edwin Rivas-Trujillo and Jan Meyer
    Citation: Protection and Control of Modern Power Systems 2023 8:3
  21. In feeder automation transformation there are difficulties in equipment and location selection. To help with this, an optimal layout model of feeder automation equipment oriented to the type of fault detection...

    Authors: Ruizhi Chen, Xihong Li and Yanbo Chen
    Citation: Protection and Control of Modern Power Systems 2023 8:2
  22. The electric distribution system (EDS) is prone to faults leading to power interruptions. The present energy market demands that electricity utilities invest more in different measures to improve the performan...

    Authors: Bratati Ghosh, Ajoy Kumar Chakraborty and Arup Ratan Bhowmik
    Citation: Protection and Control of Modern Power Systems 2023 8:1
  23. As high amounts of new energy and electric vehicle (EV) charging stations are connected to the distribution network, the voltage deviations are likely to occur, which will further affect the power quality. It ...

    Authors: Biao Xu, Guiyuan Zhang, Ke Li, Bing Li, Hongyuan Chi, Yao Yao and Zhun Fan
    Citation: Protection and Control of Modern Power Systems 2022 7:51

    The Correction to this article has been published in Protection and Control of Modern Power Systems 2023 8:21

  24. In this paper, an overview of several strategies for fault ride-through (FRT) capability improvement of a doubly-fed induction generator (DFIG)-based wind turbine is presented. Uncertainties and parameter vari...

    Authors: Seyed Reza Mosayyebi, Seyed Hamid Shahalami and Hamed Mojallali
    Citation: Protection and Control of Modern Power Systems 2022 7:50
  25. Direct wind power purchase for large industrial users is a meaningful way to improve wind power consumption and decrease industrial production costs. Short-term wind power fluctuations may lead to large-scale ...

    Authors: Xin Ding, Jian Xu, Yuanzhang Sun, Siyang Liao and Jingwen Zheng
    Citation: Protection and Control of Modern Power Systems 2022 7:49
  26. Health condition monitoring of induction motors is important because of their vital role and wide us in a variety of industries. A stator inter-turn fault (SITF) is considered to be the most common electrical ...

    Authors: Ali Namdar
    Citation: Protection and Control of Modern Power Systems 2022 7:48
  27. This paper investigates automatic generation control (AGC) of a realistic hybrid four-control area system with a distinct arrangement of thermal units, gas units and additional power generation. A proportional...

    Authors: Debdeep Saha, Lalit Chandra Saikia and Asadur Rahman
    Citation: Protection and Control of Modern Power Systems 2022 7:47
  28. To improve location speed, accuracy and reliability, this paper proposes a fault location method for distribution networks based on the time matrix of fault traveling waves. First, an inherent time matrix is e...

    Authors: Liang Cheng, Tao Wang and Yi Wang
    Citation: Protection and Control of Modern Power Systems 2022 7:46
  29. With the rapid development of flexible interconnection technology in active distribution networks (ADNs), many power electronic devices have been employed to improve system operational performance. As a novel ...

    Authors: Peng Li, Jie Ji, Sirui Chen, Haoran Ji, Jing Xu, Guanyu Song, Jinli Zhao, Jianzhong Wu and Chengshan Wang
    Citation: Protection and Control of Modern Power Systems 2022 7:45
  30. The application of many sensor devices and complex information communication networks in a power system brings new potential threats to the electrical cyber-physical system. In this paper, a coordinated cyber-...

    Authors: Jun Yang, Guanhang Sun and Jianshu Yin
    Citation: Protection and Control of Modern Power Systems 2022 7:44
  31. A conventional hybrid circuit breaker (HCB) is used to protect a voltage source converter-based high voltage direct current transmission system (VSC-HVDC) from a short circuit fault. With the increased convert...

    Authors: Muhammad Ahmad, Chunyang Gong, Muhammad Haroon Nadeem, Hui Chen and Zhixin Wang
    Citation: Protection and Control of Modern Power Systems 2022 7:43
  32. This study proposes a novel combined primary and secondary control approach for direct current microgrids, specifically in islanded mode. In primary control, this approach establishes an appropriate load power...

    Authors: Vahid Mortezapour, Sajjad Golshannavaz, Edris Pouresmaeil and Amin Yazdaninejadi
    Citation: Protection and Control of Modern Power Systems 2022 7:42
  33. The development of distributed renewable energy, such as photovoltaic power and wind power generation, makes the energy system cleaner, and is of great significance in reducing carbon emissions. However, weath...

    Authors: Xueqian Fu, Xianping Wu, Chunyu Zhang, Shaoqian Fan and Nian Liu
    Citation: Protection and Control of Modern Power Systems 2022 7:41
  34. The estimation of state of health (SOH) of a lithium-ion battery (LIB) is of great significance to system safety and economic development. This paper proposes a SOH estimation method based on the SSA-Elman mod...

    Authors: Yu Guo, Dongfang Yang, Yang Zhang, Licheng Wang and Kai Wang
    Citation: Protection and Control of Modern Power Systems 2022 7:40
  35. In order to accurately evaluate power system stability in a timely manner after faults, and further improve the feature extraction ability of the model, this paper presents an improved transient stability asse...

    Authors: Shan Cheng, Zihao Yu, Ye Liu and Xianwang Zuo
    Citation: Protection and Control of Modern Power Systems 2022 7:39
  36. A thermoelectric generation (TEG) system has the weakness of relatively low thermoelectric conversion efficiency caused by heterogeneous temperature distribution (HgTD). Dynamic reconfiguration is an effective...

    Authors: Yijun Chen, Bo Yang, Zhengxun Guo, Jingbo Wang, Mengmeng Zhu, Zilin Li and Tao Yu
    Citation: Protection and Control of Modern Power Systems 2022 7:38
  37. Hydrogen energy is a promising renewable resource for the sustainable development of society. As a key member of the fuel cell (FC) family, the solid oxide fuel cell (SOFC) has attracted a lot of attention bec...

    Authors: Bo Yang, Yulin Li, Jiale Li, Hongchun Shu, Xinyu Zhao, Yaxing Ren and Qiang Li
    Citation: Protection and Control of Modern Power Systems 2022 7:36
  38. The ‘mismatch losses’ problem is commonly encountered in distributed photovoltaic (PV) power generation systems. It can directly reduce power generation. Hence, PV array reconfiguration techniques have become ...

    Authors: Xiaolun Fang, Qiang Yang and Wenjun Yan
    Citation: Protection and Control of Modern Power Systems 2022 7:35
  39. This paper proposes an improved sine–cosine algorithm (ISCA) based 2-DOF-PID controller for load frequency control. A three-area test system is built for study, while some physical constraints (nonlinearities)...

    Authors: Neelesh Kumar Gupta, Manoj Kumar Kar and Arun Kumar Singh
    Citation: Protection and Control of Modern Power Systems 2022 7:33
  40. Owing to the significant number of hybrid generation systems (HGSs) containing various energy sources, coordination between these sources plays a vital role in preserving frequency stability. In this paper, an...

    Authors: Hossam S. Salama, Gaber Magdy, Abualkasim Bakeer and Istvan Vokony
    Citation: Protection and Control of Modern Power Systems 2022 7:34
  41. Outage recovery is important for reducing the economic cost and improving the reliability of a distribution system (DS) in extreme weather and with equipment faults. Previous studies have separately considered...

    Authors: Chenchen Li, Yanna Xi, Yufan Lu, Nian Liu, Liudong Chen, Li Ju and Yibin Tao
    Citation: Protection and Control of Modern Power Systems 2022 7:32
  42. To improve the stability of a wind-diesel hybrid microgrid, a frequency control strategy is designed by using the hybrid energy storage system and the adjustable diesel generator with load frequency control (L...

    Authors: Yang Mi, Boyang Chen, Pengcheng Cai, Xingtang He, Ronghui Liu and Xingwu Yang
    Citation: Protection and Control of Modern Power Systems 2022 7:31
  43. The existing electricity market mechanisms designed to promote the consumption of renewable energy generation complicate network participation in market transactions owing to an unfair market competition envir...

    Authors: Qianya He, Zhenjia Lin, Haoyong Chen, Xinyun Dai, Yirui Li and Xin Zeng
    Citation: Protection and Control of Modern Power Systems 2022 7:30
  44. This paper develops a multi-timescale coordinated operation method for microgrids based on modern deep reinforcement learning. Considering the complementary characteristics of different storage devices, the pr...

    Authors: Chunchao Hu, Zexiang Cai, Yanxu Zhang, Rudai Yan, Yu Cai and Bowei Cen
    Citation: Protection and Control of Modern Power Systems 2022 7:29

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