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  1. Book ; Online: Energy Management of Integrated Energy System in Large Ports

    Huang, Wentao / Yu, Moduo / Li, Hao / Tai, Nengling

    (Springer Series on Naval Architecture, Marine Engineering, Shipbuilding and Shipping ; 18)

    2023  

    Author's details by Wentao Huang, Moduo Yu, Hao Li, Nengling Tai
    Series title Springer Series on Naval Architecture, Marine Engineering, Shipbuilding and Shipping ; 18
    Keywords Energy policy ; Energy and state ; Electric power distribution ; Sustainability ; Transportation engineering ; Traffic engineering
    Language English
    Size 1 Online-Ressource (XIV, 291 p. 129 illus., 109 illus. in color)
    Edition 1st ed. 2023
    Publisher Springer Nature Singapore ; Imprint: Springer
    Publishing place Singapore
    Document type Book ; Online
    HBZ-ID HT030624208
    ISBN 978-981-99-8795-5 ; 9789819987948 ; 9789819987962 ; 9789819987979 ; 981-99-8795-4 ; 9819987946 ; 9819987962 ; 9819987970
    DOI 10.1007/978-981-99-8795-5
    Database ZB MED Catalogue: Medicine, Health, Nutrition, Environment, Agriculture

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  2. Article ; Online: Fault Reconfiguration in Distribution Networks Based on Improved Discrete Multimodal Multi-Objective Particle Swarm Optimization Algorithm.

    Li, Xin / Li, Mingyang / Yu, Moduo / Fan, Qinqin

    Biomimetics (Basel, Switzerland)

    2023  Volume 8, Issue 5

    Abstract: Distribution network reconfiguration involves altering the topology structure of distribution networks by adjusting the switch states, which plays an important role in the smart grid since it can effectively isolate faults, reduce the power loss, and ... ...

    Abstract Distribution network reconfiguration involves altering the topology structure of distribution networks by adjusting the switch states, which plays an important role in the smart grid since it can effectively isolate faults, reduce the power loss, and improve the system stability. However, the fault reconfiguration of the distribution network is often regarded as a single-objective or multi-objective optimization problem, and its multimodality is often ignored in existing studies. Therefore, the obtained solutions may be unsuitable or infeasible when the environment changes. To improve the availability and robustness of the solutions, an improved discrete multimodal multi-objective particle swarm optimization (IDMMPSO) algorithm is proposed to solve the fault reconfiguration problem of the distribution network. To demonstrate the performance of the proposed IDMMPSO algorithm, the IEEE33-bus distribution system is used in the experiment. Moreover, the proposed algorithm is compared with other competitors. Experimental results show that the proposed algorithm can provide different equivalent solutions for decision-makers in solving the fault reconfiguration problem of the distribution network.
    Language English
    Publishing date 2023-09-18
    Publishing country Switzerland
    Document type Journal Article
    ISSN 2313-7673
    ISSN (online) 2313-7673
    DOI 10.3390/biomimetics8050431
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  3. Article ; Online: The multi-visit-multi-voyage scheduling of the heterogeneous shuttle tanker fleet via inventory-oriented joint planning

    Li, Hao / Huang, Wentao / Li, Ran / Yu, Moduo / Tai, Nengling / Zhou, Songli

    Applied Energy. 2023 Mar., v. 334 p.120354-

    2023  

    Abstract: The deep-sea oil exploitation leads to the growing utilization of the Floating Production Storage and Offloading (FPSO), where the crude oil is processed and stored until it can be transferred to a shuttle tanker. The conventional scheduling method of ... ...

    Abstract The deep-sea oil exploitation leads to the growing utilization of the Floating Production Storage and Offloading (FPSO), where the crude oil is processed and stored until it can be transferred to a shuttle tanker. The conventional scheduling method of one shuttle tanker serving a fixed FPSO is challenged by the increasing numbers and capacities of the deep-sea FPSOs. This paper proposes a collaborative scheduling method by pooling the transportation capabilities of the shuttle tankers and conducting inventory-dependent route planning. The inventory headroom of the FPSO is taken as a key variable for the route planning of the shuttle tankers. A multi-visit-multi-voyage model is constructed to schedule the optimal routes for the shuttle tanker fleet in the multi-voyage time period. Case studies demonstrated that by implementing the collaborative scheduling, the proposed model could achieve 11.14% transportation cost saving in the planning period when compared with the conventional shuttle tanker scheduling model. By proper combining the shuttle tanker types, further cost savings can be obtained while using less shuttle tankers to execute oil transportation.
    Keywords energy ; inventories ; models ; oils ; petroleum ; transportation ; Floating Production Storage and Offloading (FPSO) ; Economical scheduling ; Multi-voyage ; Variable speed factor ; mixed-integer linear programming (MILP)
    Language English
    Dates of publication 2023-03
    Publishing place Elsevier Ltd
    Document type Article ; Online
    ZDB-ID 2000772-3
    ISSN 0306-2619
    ISSN 0306-2619
    DOI 10.1016/j.apenergy.2022.120354
    Database NAL-Catalogue (AGRICOLA)

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  4. Article: Assessment of Wind Power Potential and Economic Analysis at Hyderabad in Pakistan: Powering to Local Communities Using Wind Power

    Gul, Mehr / Huang, Wentao / Nadeem, Muhammad Haroon / Tai, Nengling / Yu, Moduo

    Sustainability. 2019 Mar. 06, v. 11, no. 5

    2019  

    Abstract: Wind power is the fastest growing and environmentally sustainable source of energy among all available renewable energy resources. The primary objective of this paper is to analyze the wind characteristics and power potential at Hyderabad, Southeastern ... ...

    Abstract Wind power is the fastest growing and environmentally sustainable source of energy among all available renewable energy resources. The primary objective of this paper is to analyze the wind characteristics and power potential at Hyderabad, Southeastern province in Pakistan. Two years of wind speed data measured at 10 m above ground level (AGL) have been considered in this study. The annually, monthly, and seasonal variations in wind speed were analyzed, and minimum, maximum, and average values of recorded wind speeds are presented in this paper. Weibull and Rayleigh distribution functions have been applied to analyze the wind characteristics and evaluate the wind power potential of the proposed site. The Weibull shape k and scale c parameters have been estimated using the Weibull function. The higher values of k showed that the wind speed is steady at the site. The average wind speed was found above 6 m/s throughout the year. The most probable wind speed (V<inf>mp</inf>) and maximum carrying energy (V<inf>maxE</inf>) wind speed were also calculated using Weibull parameters. Root mean square error (RMSE), the coefficient of determination (R2), and mean bias error (MBE) were computed to ensure the good fit of Weibull distribution function. The annual average wind power and energy densities were estimated at more than 255 W/m2 and 2245 kWh/m2, respectively. The power density calculated by Weibull and Rayleigh functions was compared with that calculated by using measured wind data. The energy output and capacity factor of different commercially available wind turbines (WTs), i.e., power ratings from 0.33 to 2.75 MW, have been calculated. The cost of energy was estimated and ranged from $19.27 to $32.80 per MWh. Wind power potential and economic analysis of the collected data reveals that the site is suitable for developing wind power generation projects to power the local communities.
    Keywords energy ; energy costs ; power generation ; seasonal variation ; Weibull statistics ; wind power ; wind speed ; wind turbines ; Pakistan
    Language English
    Dates of publication 2019-0306
    Publishing place Multidisciplinary Digital Publishing Institute
    Document type Article
    ZDB-ID 2518383-7
    ISSN 2071-1050
    ISSN 2071-1050
    DOI 10.3390/su11051391
    Database NAL-Catalogue (AGRICOLA)

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  5. Article: Transient stability mechanism of grid-connected inverter-interfaced distributed generators using droop control strategy

    Yu, Moduo / Nengling Tai / Pan Wu / Weidong Chen / Wentao Huang / Xiaodong Zheng

    Applied energy. 2018 Jan. 15, v. 210

    2018  

    Abstract: The large-scale application of renewable energy is promising to solve the energy crisis over the world. Renewable energy is generally integrated into distribution networks or microgrids through inverters. Inverter-interfaced distributed generators (IIDGs) ...

    Abstract The large-scale application of renewable energy is promising to solve the energy crisis over the world. Renewable energy is generally integrated into distribution networks or microgrids through inverters. Inverter-interfaced distributed generators (IIDGs) have the advantage of utilizing renewable energy effectively and flexibly. However, the wide interconnection of IIDGs causes transient stability to the public grid. This paper presents the transient stability mechanism of the grid-connected IIDGs using droop control. The transient stability mechanism is obtained by combining the transient stability condition and the comprehensive dynamic trace. The transient stability condition is proposed by the transient model and IIDGs’ operation features. The comprehensive dynamic trace is formulated by the active and reactive power curves during transient events. The mechanism is able to reflect the relations between transient stability and droop factors and reveal the transient behaviors of IIDGs. The transient stability judgment is correspondingly developed. A series of simulations demonstrate the correctness and effectiveness of the transient stability mechanism. The transient stability mechanism better expands and develops the utilization of renewable energy.
    Keywords energy ; models ; renewable energy sources
    Language English
    Dates of publication 2018-0115
    Size p. 737-747.
    Publishing place Elsevier Ltd
    Document type Article
    ZDB-ID 2000772-3
    ISSN 0306-2619
    ISSN 0306-2619
    DOI 10.1016/j.apenergy.2017.08.104
    Database NAL-Catalogue (AGRICOLA)

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  6. Article: Transient Stability Mechanism of Grid-Connected Inverter-Interfaced Distributed Generators Using Droop Control Strategy

    Yu, Moduo / Wentao Huang / Nengling Tai / Xiaodong Zheng / Pan Wu / Weidong Chen

    Applied energy. 2017,

    2017  

    Abstract: The large-scale application of renewable energy is promising to solve the energy crisis over the world. Renewable energy is generally integrated into distribution networks or microgrids through inverters. Inverter-interfaced distributed generators (IIDGs) ...

    Abstract The large-scale application of renewable energy is promising to solve the energy crisis over the world. Renewable energy is generally integrated into distribution networks or microgrids through inverters. Inverter-interfaced distributed generators (IIDGs) have the advantage of utilizing renewable energy effectively and flexibly. However, the wide interconnection of IIDGs causes transient stability to the public grid. This paper presents the transient stability mechanism of the grid-connected IIDGs using droop control. The transient stability mechanism is obtained by combining the transient stability condition and the comprehensive dynamic trace. The transient stability condition is proposed by the transient model and IIDGs’ operation features. The comprehensive dynamic trace is formulated by the active and reactive power curves during transient events. The mechanism is able to reflect the relations between transient stability and droop factors and reveal the transient behaviors of IIDGs. The transient stability judgment is correspondingly developed. A series of simulations demonstrate the correctness and effectiveness of the transient stability mechanism. The transient stability mechanism better expands and develops the utilization of renewable energy.
    Keywords energy ; models ; renewable energy sources
    Language English
    Size p. .
    Publishing place Elsevier Ltd
    Document type Article
    Note Pre-press version
    ZDB-ID 2000772-3
    ISSN 0306-2619
    ISSN 0306-2619
    DOI 10.1016/j.apenergy.2017.08.104
    Database NAL-Catalogue (AGRICOLA)

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  7. Book ; Online: Energy Management of Integrated Energy System in Large Ports

    Huang, Wentao / Yu, Moduo / Li, Hao / Tai, Nengling

    (Springer Series on Naval Architecture, Marine Engineering, Shipbuilding and Shipping)

    620  

    Series title Springer Series on Naval Architecture, Marine Engineering, Shipbuilding and Shipping
    Keywords Energy technology & engineering ; Electrical engineering ; Sustainability ; Highway & traffic engineering ; Green port ; Port electrification ; Integrated energy system ; Energy management ; Port microgrid planning ; Converter-based control ; Economic dispatch of port power system ; Optimization of multi-energy utilization ; Port low-carbon planning
    Language 0|e d
    Dates of publication 620-23
    Size 1 electronic resource (291 pages)
    Publisher Springer Nature
    Publishing place Singapore
    Document type Book ; Online
    Note English
    HBZ-ID HT030648800
    ISBN 9789819987948 ; 9819987946
    Database ZB MED Catalogue: Medicine, Health, Nutrition, Environment, Agriculture

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