Chinese Journal of Ship Research, Volume. 17, Issue 6, 36(2022)

Situation and prospects of shipboard integrated power system reconfiguration technology

Zhengzhuo LIANG, Wanlu ZHU, Zhiyu ZHU, Pengfei ZHI, and Haoqing CHU
Author Affiliations
  • School of Automation, Jiangsu University of Science and Technology, Zhenjiang 212100, China
  • show less
    References(35)

    [6] [6] HMS Queen Elizabeth: Royals attend aircraft carrier ceremony[EBOL]. BBC News. (20171207)[20220128]. https:latterdaysaintmag.comnewshmsqueenelizabethroyalsattendaircraftcarrierceremony.

    [9] [9] ZOHRABI N, ABDELWAHED S, SHI J. Reconfiguration of MVDC shipboard power systems: a model predictive control approach[C]2017 IEEE Electric Ship Technologies Symposium (ESTS). Arlington: IEEE, 2017: 253–258.

    [15] [15] SABATUCCI L, SIMONE G D, COSSENTINO M. Shipboard power system reconfiguration: a selfadaptation exemplar[C]2018 IEEEACM 4th International Wkshop on Software Engineering f Smart CyberPhysical Systems. Gothenburg: IEEE, 2018: 4952.

    [18] [18] JAVAID U, DUJI D, VAN DER MERWE W. MVDC marine electrical distribution: are we ready[C]IECON 2015 41st Annual Conference of the IEEE Industrial Electronics Society. Yokohama: IEEE, 2016: 823–828.

    [19] [19] GLOVER J D, SARMA M S, OVERBYE T J. Power system analysis design[M]. 4th ed. Tampa: Thomson, 2008.

    [20] [20] ZHU W L, LIANG Z Z, ZHU Z Y, et al. A distributed hybrid control framewk f shipboard power system reconfiguration[C]2021 4th IEEE International Conference on Industrial CyberPhysical Systems (ICPS). Victia: IEEE, 2021: 769–774.

    [25] [25] SCHUDDEBEURS J D, BOOTH C D, BURT G M, et al. Impact of marine power system architectures on IFEP vessel availability survivability[C]2007 IEEE Electric Ship Technologies Symposium. Arlington: IEEE, 2007: 14–21.

    [34] [34] HU J, WANG T, WANG Z, et al. Switching system''s MLE based transient stability assessment of ACDC hybrid system considering continuous commutation failure[J] IEEE Transactions on Power Systems, 2021, 36(1): 757−768.

    [35] [35] CHEN K, LI Y G, ZHANG J L, et al. Dynamic economic dispatch f CHPMG system based on mixed logical dynamic model MPC method[C]2020 39th Chinese Control Conference (CCC). Shenyang: IEEE, 2020: 1630–1636.

    [36] [36] YASAR M, BEYTIN A, BAJPAI G, et al. Integrated electric power system supervision f reconfiguration damage mitigation[C]2009 IEEE Electric Ship Technologies Symposium. Baltime: IEEE, 2009: 345−352.

    [37] [37] BABAEI M, SHI J, ZOHRABI N, et al. Development of a hybrid model f shipboard power systems[C]2015 IEEE Electric Ship Technologies Symposium (ESTS). Old Town Alexria: IEEE, 2015: 145−149.

    [38] [38] LIANG Z Z, ZHU W L, SHI J, et al. Ship integrated power system reconfiguration research under partial observation[J]. Energy Repts, 2022, 8(Supp 5): 444−452.

    [51] SRIVASTAVA S K, BUTLER-PURRY K L. Probability-based predictive self-healing reconfiguration for shipboard power systems[J]. IET Generation, Transmission & Distribution, 1, 405-413(2007).

    [53] [53] OUYANG L, LI Y, TAN Y, et al. Reconfiguration optimization of DC zonal distribution wk of shipboard power system[C]2016 IEEE Transptation Electrification Conference Expo, AsiaPacific (ITEC AsiaPacific). Busan: IEEE, 2016: 444448.

    [54] [54] BUTLER K L, SARMA N D R. General reconfiguration methodology f AC radial shipboard power systems[C]2000 IEEE Power Engineering Society Winter Meeting. Singape: IEEE, 2000: 1226−1230.

    [60] BABAEI M, JAFARI-MARANDI R, ABDELWAHED S et al. A novel approach for real-time implementation of MVDC shipboard power system reconfiguration[J]. International Journal of Electrical Power & Energy Systems, 100, 240-252(2018).

    [63] [63] DING Z P, SRIVASTAVA S, CARTES D. Expert system based dynamic load shedding scheme f shipboard power systems[C]Conference Recd of the 2006 IEEE Industry Applications Conference FtyFirst IAS Annual Meeting. Tampa: IEEE, 2006: 13381344.

    [71] [71] BELKACEMI R, FELIACHI A. Design deployment of a multiagent system on a hardware prototype[C]IEEE PES General Meeting. Minneapolis: IEEE, 2010: 17.

    [73] WANG Z, XIA L, WANG Y J et al. Multiagent and particle swarm optimization for ship integrated power system network reconfiguration[J]. Mathematical Problems in Engineering, 2014, 280345(2014).

    [74] PANASETSKY D, SIDOROV D, LI Y et al. Centralized emergency control for multi-terminal VSC-based shipboard power systems[J]. International Journal of Electrical Power & Energy Systems, 104, 205-214(2019).

    [75] [75] ZHU W L, SHI J, ZHI P F, et al. Mission based reconfiguration f hybrid shipboard power systems considering threats[C]2020 IEEE 18th International Conference on Industrial Infmatics (INDIN). Warwick: IEEE, 2020: 833838.

    Tools

    Get Citation

    Copy Citation Text

    Zhengzhuo LIANG, Wanlu ZHU, Zhiyu ZHU, Pengfei ZHI, Haoqing CHU. Situation and prospects of shipboard integrated power system reconfiguration technology[J]. Chinese Journal of Ship Research, 2022, 17(6): 36

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category:

    Received: Apr. 29, 2022

    Accepted: --

    Published Online: Mar. 26, 2025

    The Author Email:

    DOI:10.19693/j.issn.1673-3185.02885

    Topics