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Implementing a demand side management strategy for harmonics mitigation in a smart home using real measurements of household appliances

机译:利用家用电器实际测量实施智能家庭谐波缓解的需求方管理策略

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摘要

Significant developments on semiconductor technology have captured the electronic industry and paved the way for dominating household appliances market. Typical loads in this market generally have nonlinear voltage current characteristics. Therefore, highly-integrated power-electronic based electrical equipment in the demand side has caused harmonic pollution, which is one of the most important power quality problems in distribution system operation. To address this issue, there have been significantly great attempts to keep total harmonic distortion (THD) and total demand distortion (TDD) levels within International standard limits defined by IEEE 519 and IEC 61000. On the other hand, load shifting has recently drawn special attention of power grid planners to improve system performance substantially in the smart grid paradigm. In this study, the real harmonic measurements of residential appliances (both linear and nonlinear) are carried out in the Smart Home Laboratory in Yildiz Technical University, Istanbul, Turkey. Different load profiles are then created with a high accuracy based on the measured voltage and current, active, reactive and apparent power. Also, three case studies are considered to investigate the impacts of load shifting strategies on power quality requirements in terms of satisfying the relevant standards. As a result, it is shown that the TDD value decreases below nearly 8% limitation by mitigating the harmonic distortion and the TDD index, which indicates the harmonic distortion effect on the system regarding the desired standard limits of IEEE.
机译:半导体技术的显着发展捕获了电子行业,为主导家电市场铺平了道路。该市场中的典型负载通常具有非线性电压电流特性。因此,需求侧高度集成的电力电子电气设备引起了谐波污染,这是分配系统运行中最重要的功率质量问题之一。为了解决这个问题,在IEEE 519和IEC 61000定义的国际标准限制中,保持总谐波失真(THD)和总需求失真(TDD)水平的速度显着大量尝试。另一方面,负载转移最近绘制了特殊电网策划人员的注意力,以提高智能电网范例的系统性能。在这项研究中,住宅电器(线性和非线性)的实际谐波测量在伊斯坦布尔,土耳其伊斯坦布尔的智能家庭实验室进行。然后基于测量的电压和电流,主动,无功和表观功率,以高精度创建不同的负载轮廓。此外,三项案例研究被认为是在满足相关标准方面调查负载转移策略对电能质量要求的影响。结果,示出了通过减轻谐波失真和TDD索引来降低TDD值的限制低于近8%,这指示关于IEEE的期望标准限制的系统的谐波失真效应。

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