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Supplementary Energy Storage and Hybrid Front-End Converters for High-Power Mobile Mining Equipment

机译:大功率移动采矿设备的辅助储能和混合前端转换器

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摘要

To supply the high-power ac-drive systems of the mining equipment, several active front ends with dc choppers are used to ensure reliable operation and an acceptable harmonic current spectrum. Recently, the integration of the energy storage system with the mining equipment has received industry attention, particularly for peak load shaving and smarter energy management of the mines. Currently, the regenerative energy is often burned into the choppers and is not fed back to the grid. The industry is motivated to capture this regenerative energy since it can be as high as 60% of the motoring power, as high as 3 MJ in every operation cycle, and as high as 24-MW peak power. Therefore, there is a possibility of large cost reductions and component rating reduction. In this paper, we investigate the operation of the current state-of-the-art front-end converter systems for multimotor applications. In particular, we propose power conversion configurations and methodology to determine the suitable energy storage technology for the development of the multimotor mobile mining equipment that has encouraging incentives for both the manufacturers and the mine operators.
机译:为了为采矿设备提供大功率交流驱动系统,使用了几个带有直流斩波器的有源前端,以确保可靠的操作和可接受的谐波电流频谱。最近,储能系统与采矿设备的集成受到了业界的关注,尤其是在峰值负荷削减和矿山更智能的能源管理方面。目前,可再生能源经常被烧成斩波器,而不会反馈到电网。业界希望捕获这种可再生能量,因为它可以高达电动机功率的60%,每个操作周期高达3 MJ,并且峰值功率高达24 MW。因此,有可能大幅度降低成本并降低部件额定值。在本文中,我们研究了当前用于多电机应用的最新前端转换器系统的操作。特别是,我们提出了功率转换配置和方法,以确定适合开发多电机移动式采矿设备的合适的储能技术,这对制造商和矿山经营者都具有激励作用。

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