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A unified power quality conditioner for power quality improvement in distributed generation network using adaptive distributed power balanced control (ADPBC)

机译:一种统一的电能质量调节器,用于使用自适应分布式功率平衡控制(ADPBC)分布式发电网络的电能质量改进

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摘要

Power quality improvement is one of the central and critical needs in all types of power-driven industries for perfect utilization of sources. However, fundamental inconveniences in power quality have been recognized, for instance, sags, swells, harmonic distortions and different blocks. Among those, sags and swells are overwhelmingly uncovered, and each influences the electrical gadgets or electrical machines and this requires to be compensated with an advancement to ensure any mal-operation or disappointment. To settle these troubles, custom power gadgets are used like unified power quality conditioner (UPQC), dynamic voltage restorer (DVR) and Distributed Static Compensator (DSTATCOM). This work aims to update the power quality in both single-phase and three-phase system using UPQC. The capacity of UPQC to mitigate voltage sag, voltage swell, responsive power remuneration, load balancing, zero voltage direction, and power factor redress and Total Harmonics Distortion (THD) in the appropriation framework is done by utilizing adaptive distributed power balanced control (ADPBC) method. This investigation works on the single-phase UPQC design to utilize two H-connect setups with eight switches and the three-phase UPQC arrangement to use four legs and three-phase four wire course of action. The overall function of the UPQC with distributed generation (DG) system will be able to compensate for the offset voltage and current disturbances with all the compensated data being collected and verified in Internet of Things (IoT) based on conditional Random Fields (CRFs).
机译:电力质量改进是所有类型的动力驱动行业,用于完美利用来源的核心和关键需求之一。然而,落下,膨胀,谐波扭曲和不同块,已经认识到电力质量的基本不便。其中,凹凸和膨胀是压倒性地未被揭示的,并且每个都会影响电气小工具或电机,这需要通过进步来补偿,以确保任何误操作或失望。为了解决这些问题,定制电源小工具使用统一电源质量调节器(UPQC),动态电压恢复器(DVR)和分布式静态补偿器(DSTATCOM)。这项工作旨在使用UPQC更新单相和三相系统的电力质量。通过利用自适应分布式功率平衡控制(ADPBC)来完成UPQC减轻电压凹槽,电压膨胀,响应功率报酬,负载平衡,零电压方向和功率因数补偿和总谐波失真(THD)方法。本研究采用单相UPQC设计,利用两个H-Connect Setups,使用八个开关和三相UPQC排列来使用四个腿和三相四个线路行动。具有分布式发电(DG)系统的UPQC的整体功能将能够补偿偏移电压和电流干扰,基于条件随机字段(CRF)在物联网(IOT)中收集和验证所有补偿数据。

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