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DC-Bus Voltage Control of MPPT-based Wind Generation System Using Hybrid BESS-SMES System for Pulse Loads in Ship Power Applications

机译:基于MPPT的风力发电系统的DC总线电压控制使用混合BESS-SMES系统进行船舶电源应用

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Renewable energy systems (RESs) have grown to be a more economical and eco-friendly option for isolated applications such as ship where the grid's energy cannot be delivered. However, the presence of RESs has a significant challenge since the generation mainly depends on meteorological conditions. Moreover, the ship applications contain pulsed load which cause high power pulsation, voltage drop, and instability in the overall system. This paper proposes a robust hybrid energy storage system (HESS) with an effective energy management. Besides, extracting the maximum generated power and regulating both the DC-bus and AC-bus voltages under different conditions such as changing the load demand, and different unsteady meteorological conditions. The HESS consists of battery energy storage system (BESS) and superconducting magnetic energy storage (SMES). The HESS is able to improve the stability of the DC-bus during the pulse load rather than the BESS only and SMES only. The performance of the proposed system with its control strategies are verified by test results.
机译:可再生能源系统(RESS)已生长为更经济,并为孤立的应用程序提供更经济和环保的选择,例如船舶不能交付网格能量的船舶。然而,由于这一代主要取决于气象条件,因此Ress的存在具有重大挑战。此外,船舶应用包含脉冲负载,引起整个系统中的高功率脉动,电压降,稳定性。本文提出了一种具有有效能量管理的强大混合能量存储系统(HESS)。此外,在不同条件下提取最大产生的功率和调节DC总线和交流总线电压,例如改变负载需求,以及不同的不稳定气象条件。 HESS由电池储能系统(BESS)和超导磁能存储(SMES)组成。 HESS能够在脉冲负载期间提高DC总线的稳定性,而不是仅限BESS和SMES。通过测试结果验证了所提出的系统的性能及其控制策略。

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