Battery Degradation Heuristics for Predictive Energy Management in Shipboard Power Systems

Fuente: arXiv
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Main Authors: Vedula, Satish, Olajube, Ayobami, Omiloli, Koto, Anubi, Olugbenga Moses
Format: Preprint
Published: 2024
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author Vedula, Satish
Olajube, Ayobami
Omiloli, Koto
Anubi, Olugbenga Moses
author_facet Vedula, Satish
Olajube, Ayobami
Omiloli, Koto
Anubi, Olugbenga Moses
contents The presence of Pulse Power Loads (PPLs) in the Notional Shipboard Power System (SPS) presents a challenge in the form of meeting their high ramp rate requirements. Considering the ramp rate limitations on the generators, this might hinder the power flow in the grid. Failure to meet the ramp rate requirements might cause instability. Aggregating generators with energy storage elements usually addresses the ramp requirements while ensuring the power demand is achieved. This paper proposes an energy management strategy that adaptively splits the power demand between the generators and the batteries while simultaneously considering the battery degradation and the generator's efficient operation. Since it is challenging to incorporate the battery degradation model directly into the optimization problem due to its complex structure and the degradation time scale which is not practical for real-time implementation, two reasonable heuristics in terms of minimizing the absolute battery power and minimizing the battery state of charge are proposed and compared to manage the battery degradation. A model predictive energy management strategy is then developed to coordinate the power split considering the generator efficiency and minimizing the battery degradation based on the two heuristic approaches. The designed strategy is tested via a simulation of a lumped notional shipboard power system. The results show the impact of the battery degradation heuristics for energy management strategy in mitigating battery degradation and its health management.
format Preprint
id arxiv_https___arxiv_org_abs_2405_18633
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Battery Degradation Heuristics for Predictive Energy Management in Shipboard Power Systems
Vedula, Satish
Olajube, Ayobami
Omiloli, Koto
Anubi, Olugbenga Moses
Optimization and Control
The presence of Pulse Power Loads (PPLs) in the Notional Shipboard Power System (SPS) presents a challenge in the form of meeting their high ramp rate requirements. Considering the ramp rate limitations on the generators, this might hinder the power flow in the grid. Failure to meet the ramp rate requirements might cause instability. Aggregating generators with energy storage elements usually addresses the ramp requirements while ensuring the power demand is achieved. This paper proposes an energy management strategy that adaptively splits the power demand between the generators and the batteries while simultaneously considering the battery degradation and the generator's efficient operation. Since it is challenging to incorporate the battery degradation model directly into the optimization problem due to its complex structure and the degradation time scale which is not practical for real-time implementation, two reasonable heuristics in terms of minimizing the absolute battery power and minimizing the battery state of charge are proposed and compared to manage the battery degradation. A model predictive energy management strategy is then developed to coordinate the power split considering the generator efficiency and minimizing the battery degradation based on the two heuristic approaches. The designed strategy is tested via a simulation of a lumped notional shipboard power system. The results show the impact of the battery degradation heuristics for energy management strategy in mitigating battery degradation and its health management.
title Battery Degradation Heuristics for Predictive Energy Management in Shipboard Power Systems
topic Optimization and Control
url https://arxiv.org/abs/2405.18633