2019
DOI: 10.1080/20464177.2019.1684122
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Distributed energy management for ship power systems with distributed energy storage

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Cited by 18 publications
(8 citation statements)
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References 11 publications
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“…MAS is inspired by the biological phenomena, which aims to achieve system objectives cooperatively that are difficult to reach by a single agent or a centralized controller. By dividing a single optimization problem into several sub-problems (i.e., being solved individually by every single agent), MAS technologies have great potential for real-time power management [129], [130] in large-scale systems. In [91], a distributed MAS-based PMS is proposed for the optimal power-sharing with minimum distribution losses and economic dispatch of resources.…”
Section: Distributed Real-time Pms For Large-scale Spsmentioning
confidence: 99%
“…MAS is inspired by the biological phenomena, which aims to achieve system objectives cooperatively that are difficult to reach by a single agent or a centralized controller. By dividing a single optimization problem into several sub-problems (i.e., being solved individually by every single agent), MAS technologies have great potential for real-time power management [129], [130] in large-scale systems. In [91], a distributed MAS-based PMS is proposed for the optimal power-sharing with minimum distribution losses and economic dispatch of resources.…”
Section: Distributed Real-time Pms For Large-scale Spsmentioning
confidence: 99%
“…After establishing the power system and energy storage requirements, control strategies are important to achieve maximum performance. A novel energy management control strategy for pulsed-power loads to maintain voltage stability and energy storage state of charge is presented in Edrington et al (2019), which is an extension to the initial energy management concept presented in Edrington et al (2018).…”
Section: Pulsed Power Weapons Integrated Power Systems and Their Conmentioning
confidence: 99%
“…• The survivability of naval platforms and in particular design vulnerabilities (Habben Jansen et al 2019); • The growing role of pulsed-power and energy storage systems and their control (Rashkin et al 2019;Edrington et al 2019); • The growing tension between reducing ships environmental impact and maintaining manoeuvring performance and safety (Theotokatos et al 2019;Eriksson and Llamas 2019); and • The transition toward reduced crews and autonomous shipping, while maintaining safety of operations (Zaccone and Martelli 2019; Bibuli et al 2019).…”
Section: Introductionmentioning
confidence: 99%
“…How to allocate the energy of each power source, optimize the energy management of the whole ship power system in real time, and reduce the fuel energy consumption of the whole ship as much as possible is one of the key technologies to promote the rapid development of hybrid ships [3]. The energy management control system is a difficult point in the research of hybrid ships due to nonlinear, multivariable, time-varying, and other factors [4]. The advantages and disadvantages of its control strategy directly affect the power performance, economy, and emissions of hybrid ships.…”
Section: Introductionmentioning
confidence: 99%