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Research on emergency DC power support coordinated control for hybrid multi-infeed HVDC system

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Języki publikacji
EN
Abstrakty
EN
Based on the respective characteristics of line-commutated converter highvoltage direct current (LCC-HVDC) and voltage-source converter high voltage direct current (VSC-HVDC), two additional emergency DC power support (EDCPS) controllers are designed, respectively. In addition a coordinated control strategy based on a hybrid multi-infeed HVDC system for EDCPS is proposed. Considering the difference in system recovery between LCC-HVDC and VSC-HVDC in EDCPS, according to the magnitude of the amount of potential power loss, the LCC-HVDC and VSC-HVDC priority issues of boosting power for EDCPS are discussed in detail. Finally, a hybrid three-infeed HVDC that consists of two parallel LCC-HVDCs and one VSC-HVDC that is built in PSCAD/EMTDC are simulated. The effectiveness of the proposed approach is verified based on this hybrid three-infeed HVDC system.
Rocznik
Strony
5--21
Opis fizyczny
Bibliogr. 25 poz., rys., tab., wz.
Twórcy
autor
  • School of Electrical and Information Engineering, Zhengzhou University of Light Industry Henan, no. 5 Dongfeng road Zhengzhou, China
autor
  • School of Electrical and Information Engineering, Zhengzhou University of Light Industry Henan, no. 5 Dongfeng road Zhengzhou, China
autor
  • School of Electrical and Information Engineering, Zhengzhou University of Light Industry Henan, no. 5 Dongfeng road Zhengzhou, China
autor
  • School of Electrical and Information Engineering, Zhengzhou University of Light Industry Henan, no. 5 Dongfeng road Zhengzhou, China
Bibliografia
  • [1] Bahrman M.P., Johnson B.K., The ABCs of HVDC Transmission Technologies, IEEE Power and Energy Magazine, vol. 5, no. 2, pp. 32–44 (2007).
  • [2] Zhang Wei, TBEA successfully developed the world’s first VSC-UHVDC converter, China Equipment Engineering, vol. 12, no. 6 (2017).
  • [3] Guo Chunyi, Liu Wei, Zhao Jian et al.,Impact of control system on small-signal stability of hybrid multiinfeed HVDC system, IET Generation, Transmission and Distribution, vol. 12, no. 19, pp. 4233–4239 (2018).
  • [4] Guo Chunyi, Zhizhong Yang, Ning Linru et al., A Novel Coordinated Control Approach for Commutation Failure Mitigation in Hybrid Parallel-HVDC System with MMC-HVDC and LCC-HVDC, Electric Power Components and Systems, vol. 45, no. 16, pp. 1773–1782 (2017).
  • [5] Hao Xiao, Li Yinhong, Duan Xianzhong, Efficient approach for commutation failure immunity level assessment in hybrid multi-infeed HVDC systems, The Journal of Engineering, vol. 2017, no. 13, pp. 719–723 (2017).
  • [6] Li Wang, Yang Zhihao, Lu Xiuyu, Prokhorov A.V., Stability Analysis of a Hybrid Multi-Infeed HVdc System Connected Between Two Offshore Wind Farms and Two Power Grids, IEEE Transactions on Industry Applications, vol. 53, no. 3, pp. 1824–1833 (2017).
  • [7] Guo Chunyi, Liu Wei, Zhao Chengyong et al., Small-signal dynamics and control parameters optimization of hybrid multi-infeed HVDC system, International Journal of Electrical Power and Energy Systems, vol. 98, pp. 409–418 (2018).
  • [8] Guo Qinglei, Yoon Minhan, Kim Chanki et al., Commutation failure and voltage sensitivity analysis in a hybrid multi-infeed HVDC system containing modular multilevel converter, International Transaction on Electrical Energy System, vol. 26, no. 10, pp. 175–182 (2016).
  • [9] Li Hucheng, Yuan Yubo, Zhang Xiaoyi et al., Analysis of frequency emergency control characteristics of UHV AC/DC large receiving end power grid, The Journal of Engineering, vol. 2017, no. 13, pp. 686–690 (2017).
  • [10] Wen Yunfeng, Chung C.Y., Ye Xi, Enhancing Frequency Stability of Asynchronous Grids Interconnected with HVDC Links, IEEE Transactions on Power Systems, vol. 33, no. 2, pp. 1800−1810 (2018).
  • [11] Weng H., Xu Z., Xu F., Research on constraint factor of emergency power support of HVDC systems, Proceedings of the CSEE, vol. 34, vol. 10, pp. 1519–1527 (2014).
  • [12] Li Congshan, He Ping, Wang Youy et al., HVDC Auxiliary Emergency Power Control Strategy for Power Disturbance in Two Different Positions of AC/DC Interconnection System, Archives of Electrical Engineering, vol. 62, no. 2, pp. 245–263 (2019).
  • [13] Liu Chongru, Zhao Yunhao, Li Zengyin et al., Design of LCC HVDC wide-area emergency power support control based on adaptive dynamic surface control, IET Generation, Transmission and Distribution, vol. 11, no. 13, pp. 3236–3245 (2017).
  • [14] Sanz I.M., Judge P.D., Spallarossa C.D. et al., Dynamic Overload Capability of VSC HVDC Interconnections for Frequency Support, IEEE Transactions on Energy Conversion, vol. 32, no. 4, pp. 1544–1553 (2017).
  • [15] Hu Yi, Wang Xiaoru, Chen Dalin et al., Frequency stability control method considering limited EDCPS, The Journal of Engineering, vol. 2019, no. 16, pp. 2698–2705 (2019).
  • [16] Chunyi Guo, Yi Zhang et al., Analysis of Dual-Infeed HVDC with LCC-HVDC and VSC-HVDC, IEEE Transaction on Power Delivery, vol. 27, no. 3, pp. 1529–1537 (2012).
  • [17] Zhao Chengyong, Sun Ying, Li Guangkai, Control strategy of VSC-HVDC in dual-infeed HVDC systems, Proceedings of the CSEE, vol. 28, no. 7, pp. 97–103 (2008).
  • [18] Rui Zhao, Yingmin Zhang, Xingyuan Li et al., The Research on the Emergency DC Power Support Strategies of Deyang-Baoji HVDC Project, IEEE Asia-Pacific Power and Energy Engineering Conference, Wuhan, China (2011).
  • [19] Huifan Xie, Yao Zhang, Chengjun Xia et al., Influence of load model on UHVDC Emergency DC Power Support strategy, IEEE 3th International Conference on Electric Utility Deregulation and Restructuring and Power Techologies, Nanjing, China (2008).
  • [20] Jos Arrillaga, High Voltage Direct Current Transmission, Printed in England by Srort Runpress Ltd. (1998)
  • [21] Latorre H.F., Ghandhari M., Söder L., Active and reactive power control of a VSC-HVDC, Electric Power Systems Research, vol. 78, no. 10, pp. 1756–1763 (2007).
  • [22] Rodrguez P., Pou J. et al., Decoupled double synchronous reference frame PLL for power converters control, IEEE Transactions Power Electronics, vol. 22, no. 2, pp. 584–592 (2007).
  • [23] Wang Xi, Li Xingyuan, Wei Wei, Ding Lijie, Coordinated control strategy for interconnected transmission system of VSC-HVDC and LCC-HVDC, Electric Power Automation Equipment, vol. 36, no. 12, pp. 102–108 (2016).
  • [24] Chen R., Sun Z., Yang Y. et al., Emergency Power Support Control Strategy of VSC-HVDC and LCC-HVDC Coordination, Power Engineering Technology, vol. 36, no. 6, pp. 14–19 (2017).
  • [25] Yan Liu, Zhe Chen, A Flexible Power Control Method of VSC-HVDC Link for the Enhancement of Effective Short-Circuit Ratio in a Hybrid Multi-Infeed HVDC System, IEEE Transactions on Power Systems, vol. 28, no. 2, pp. 1568–1581 (2013).
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-2809d0fd-acfb-4da2-a4fa-2a54994a6cc6
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