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Distributed Assistive Control of Power Buffers in DC Microgrids

机译:直流微电网中功率缓冲器的分布式辅助控制

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Low generational inertia and lack of damping elements cause stability concerns in dc microgrids. Power buffers have been introduced to damp volatile load demands and improve microgrid's stability. Power buffer is a power electronics converter with large storage components (e.g., capacitors), which can decouple dynamics of a power distribution network and electronic loads by adjusting its input impedance and stored energy. Typically, power buffers are controlled individually to serve local loads. Alternatively, collective operation of power buffers is considered here to extend their damping effect to neighboring loads. Additionally, the group operation allows buffer designs with smaller storage components. A supervisory control to manage energy-impedance profiles of power buffers across a grid would require a complex communication network. Alternatively, distributed control lays a reliable ground to link power buffers with a minimal communication. This work offers a fully distributed feedback control algorithm to collectively manage the power buffers, using a sparse communication network. The controller enables the buffers to collectively respond to any load transient. Hardware-in-the-Loop simulation of a dc microgrid is used to show the controller's efficacy; it successfully groups power buffers in the neighborhood of the affected load and manages their energy reservoirs to shape the power supplied by the grid.
机译:低的惯性和缺少阻尼元件会导致直流微电网的稳定性问题。引入了功率缓冲器来缓解易失性负载需求并提高微电网的稳定性。功率缓冲器是具有大型存储组件(例如电容器)的功率电子转换器,可以通过调整其输入阻抗和存储的能量来使配电网络的动态与电子负载分离。通常,功率缓冲器被单独控制以服务于本地负载。可替代地,这里考虑功率缓冲器的集体操作以将其缓冲作用扩展到相邻负载。此外,分组操作允许使用较小的存储组件进行缓冲区设计。用于管理跨电网功率缓冲器的能量-阻抗曲线的监督控制将需要复杂的通信网络。另外,分布式控制为通过最少的通信链接功率缓冲器奠定了可靠的基础。这项工作提供了一种完全分布式的反馈控制算法,以使用稀疏通信网络来统一管理功率缓冲器。控制器使缓冲器能够集体响应任何负载瞬变。直流微电网的硬件在环仿真用于显示控制器的功效。它成功地在受影响的负载附近对功率缓冲器进行了分组,并管理了它们的储能器以调整电网提供的功率。

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