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Stability improvement of DC grids involving a large number of parallel solar power optimizers: An active damping approach

机译:涉及大量并行太阳能优化器的直流电网的稳定性改进:一种主动阻尼方法

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This paper aims to address a new challenge associated with parallel operation of a large number of solar power optimizers in dc power grids. It is first shown that as the number of solar power optimizers increases the stability margin of the host dc power grid decreases. Then, to circumvent the stability problem, a novel active damping approach is presented which can improve the stability of dc grids dominated by a large number of solar power optimizers. In this approach, an inner feedback loop is added to the control system of a voltage source dc-dc converter regulating the dc grid voltage. The feedback transfer function is properly tuned to achieve the highest stability margin of dc grid. The presented approach works robustly for any number of solar power optimizers. Different simulation results are provided to confirm the effectiveness of the proposed approach. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文旨在解决与直流电网中大量太阳能优化器的并行运行相关的新挑战。首先表明,随着太阳能优化器数量的增加,主机直流电网的稳定性裕度降低。然后,为了解决稳定性问题,提出了一种新颖的主动阻尼方法,该方法可以改善由大量太阳能优化器主导的直流电网的稳定性。在这种方法中,内部反馈回路被添加到调节直流电网电压的电压源DC-DC转换器的控制系统中。适当调整反馈传递函数,以实现直流电网的最高稳定裕度。所提出的方法对于任何数量的太阳能优化器均有效。提供了不同的仿真结果,以确认所提出方法的有效性。 (C)2017 Elsevier Ltd.保留所有权利。

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