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Degradation Aware Predictive Energy Management Strategy for Ship Power Systems

机译:船舶电力系统的退化意识预测能量管理策略

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Integration of modern defence weapons into ship power systems poses a challenge in terms of meeting the high ramp rate requirements of those loads. It might be demanding for the generators to meet the ramp rates of these loads. Failure to meet so, might lead to stability issues. This is addressed by conglomeration of generators and energy storage elements to handle the required power demand posed by loads. This paper proposes an energy management strategy based on model predictive control that incorporates the uncertainty in the load prediction. The proposed controller optimally coordinates the power split between the generators and energy storage elements to guarantee that the power demand is met taking into considerations the ramp rate limitations and the load uncertainty. A low bandwidth model consisting of a single generator and a single energy storage element is used to validate the results of the proposed energy management strategy. The results demonstrate the robustness of the controller under load prediction uncertainty and demonstrate the effect of load uncertainty on battery capacity loss.
机译:在满足这些负荷的高斜坡率要求方面,现代防御武器将现代防御武器融入挑战。发电机可能要求发电机满足这些负载的斜率。未能满足,可能会导致稳定性问题。这是通过混发器和能量存储元件的集合来解决,以处理负载所需的所需功率需求。本文提出了一种基于模型预测控制的能量管理策略,其结合了负载预测中的不确定性。所提出的控制器最佳地协调发电机和能量存储元件之间的功率分配,以保证考虑到斜坡率限制和负载不确定性的电力需求。由单个发电机和单个能量存储元件组成的低带宽模型用于验证所提出的能量管理策略的结果。结果证明了控制器在负载预测不确定性下的鲁棒性,并证明了负载不确定度对电池容量损耗的影响。

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