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A novel control scheme to reduce the reactive power processed by a Multifunctional Voltage-Quality Regulator

机译:减少多功能电压质量调节器处理的无功功率的新颖控制方案

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Solving voltage regulation in underrated grid networks can be very time consuming and costly for operators and unpleasant for customer, who constantly experience equipment malfunctions due poor voltage quality. Active solutions such as Multifunctional Voltage-Quality Regulator (MVQR) work well as a quick fix in these cases, bringing voltages to the right levels as soon as installed, feeding active or reactive power into their point of connection. Unfortunately, current solutions can be fastidious, adjusting voltage levels that are already adequate for customer services to a specific fixed setpoint, unnecessarily spending energy, overusing distribution networks, wearing out energy-storage components and eventually not optimizing the equipment’s regulation capacity. To address the aforementioned problems, this manuscript proposes a control scheme to reduce the reactive power processed in an existing MVQR. The MVQR was based in a distribution static compensator (DSTATCOM) with active harmonic filtering feature. Where voltage-magnitude regulation is achieved by reactive power injection only, while harmonic mitigation is performed by harmonic injection based on PCC-voltage-detection-method (PCC-VDM). The proposed MVQR control scheme reduces the reactive energy injection when the voltage level at PCC is within limits of relevant standards. The main contribution of this paper is the detailed mathematic analysis of the scheme for reducting the reactive energy injection, which had not been found in literature. This analysis shows how to design this scheme to obtain better regulation, guarantee dynamic decoupling from other control loops, as well as ensure closed-loop system stability. Simulation and experimental results were carried out for validation of the proposed control method. The proposed MVQR had shown itself an efficient and effective addition, reducing significant processed reactive power using wisely resources, likely available in similar MVQR topologies.
机译:解决被低估的电网中的电压调节问题对于操作员来说是非常耗时且昂贵的,而对于客户而言则是不愉快的,因为他们经常会因电压质量差而经历设备故障。在这种情况下,诸如多功能电压质量调节器(MVQR)之类的有源解决方案可以很好地快速解决,将电压在安装后立即带到正确的水平,将有功或无功功率馈入其连接点。不幸的是,当前的解决方案可能是挑剔的,将已经足以满足客户服务要求的电压水平调整到特定的固定设定点,不必要地消耗能量,过度使用配电网络,消耗能量存储组件,最终无法优化设备的调节能力。为了解决上述问题,该手稿提出了一种控制方案,以减少在现有MVQR中处理的无功功率。 MVQR基于具有有源谐波滤波功能的配电静态补偿器(DSTATCOM)。在仅通过无功功率注入实现电压幅度调节的情况下,而基于PCC电压检测方法(PCC-VDM)的谐波注入则实现了谐波的缓解。当PCC的电压水平在相关标准的范围内时,提出的MVQR控制方案可减少无功电能的注入。本文的主要贡献是对减少无功能量注入方案的详细数学分析,这在文献中还没有发现。该分析显示了如何设计该方案以获得更好的调节,确保与其他控制回路的动态去耦,以及确保闭环系统的稳定性。仿真和实验结果进行了验证所提出的控制方法。拟议的MVQR已经证明了自己的有效和有效的添加,它使用明智的资源(可能在类似的MVQR拓扑结构中可用)来减少大量的已处理无功功率。

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