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Fault Ride-Through Performance of Pumping Cycle Airborne Wind Energy Generators with the Support of Optimally Sized Energy Storage System

机译:故障乘车通过泵送循环空气发电机的性能,通过最佳尺寸的储能系统的支撑

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Although several types of airborne wind energy generators are under research, the pumping cycle concept has already reached a market commercialization stage. It has a unique load cycle that does not conform with existing grid codes. Therefore, the low voltage ride-through capability of such a system is investigated in this work. The power consumption phase has been identified as the most critical one due to the possible collapse of the DC-link voltage. The use of an energy storage system is proposed as a possible solution. Lithium iron batteries and ultracapacitors are optimally sized using particle swarm optimization and compared in terms of their power rating, size, cost, and depth of discharge. The results suggest that lithium batteries have an edge in this application due to their low cost and high energy density, which could prove beneficial for filtering the system output power or supporting the grid. The system performance under different grid faults is validated using computer simulation for different fault conditions.
机译:虽然几种类型的空中风能发生器正在研究中,泵送循环概念已经达到了市场商业化阶段。它具有独特的负载周期,不符合现有的网格代码。因此,在这项工作中研究了这种系统的低电压乘转录能力。由于DC-Link电压可能的崩溃,已经将功耗阶段识别为最关键的阶段。提出了能量存储系统作为可能的解决方案。锂电池和超级超容器使用粒子群优化优化,并在其额定功率,尺寸,成本和放电深度方面进行比较。结果表明,锂电池由于其低成本和高能量密度而具有本申请中的边缘,这可能证明有利于过滤系统输出功率或支持电网。使用计算机仿真进行不同的故障条件,验证了不同电网故障下的系统性能。

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