Performance Analysis of a Hybrid Electric Ship by Real-Time Verification

Author:

Torreglosa Juan P.ORCID,González-Rivera Enrique,García-Triviño PabloORCID,Vera DavidORCID

Abstract

International maritime transport organizations are proposing regulatory actions and strategies aimed at decarbonizing the sector to reduce its greenhouse gas (GHG) emissions, which currently constitute around 3% of the global total. Hybrid propulsion systems have significant potential in this respect, as a means of power-saving in ships. This paper describes a high-fidelity benchmark for hybrid-electric vessels, combining diesel generators and batteries. The benchmark consists of detailed models, the parameters of which are provided so that the models can be reproduced. The proposed hybrid-electric ship topology and control system was validated using real-time hardware-in-the-loop (HIL) simulations on a Typhoon HIL402 platform. The results provide a detailed analysis of the operation of the different components under varying conditions, which should be useful in prototyping these kinds of systems. In addition, the response of the system was evaluated with regard to potential disturbances resulting from the control system’s operation. The results show the system performed correctly during these transitory events, with no undesirable responses.

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous)

Reference32 articles.

1. Fourth IMO Greenhouse Gas Study: Executive Summary,2020

2. Oceana Europe Shipping Pollution https://europe.oceana.org/en/shipping-pollution-1

3. Decarbonization of Maritime Transport: Is There Light at the End of the Tunnel?

4. Initial IMO Strategy on Reduction of GHG Emission from Ships—Resolution MEPC.304(72),2018

5. How to decarbonise international shipping: Options for fuels, technologies and policies

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