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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Improving Solar Power Generation and Defects Detection Using a Smart IoT System for Sophisticated Distribution Control (SDC) and Independent Component Analysis (ICA) Techniques
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Improving Solar Power Generation and Defects Detection Using a Smart IoT System for Sophisticated Distribution Control (SDC) and Independent Component Analysis (ICA) Techniques

机译:使用SMART IOT系统改进太阳能发电和缺陷检测,用于复杂的分布控制(SDC)和独立分量分析(ICA)技术

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摘要

These days, peoples are more concerned respects petroleum product energy and conservational issues caused on the power generation networks and renewable power resources at any other time. Amongst the renewable power resources, solar and windmill power generations are essential competitors. Photovoltaic modules additionally have moderately least transformation effectiveness. General system price was decreased utilizing significant productivity control which are made to determine for most significant achievable energy from solar PV array module utilizing MPPT procedures. Existing solar power generation likewise have the burden of being for the day outputs is less immediate introduction from natural sun radiation. By utilizing the Internet of Things (IoT) strategies for monitoring and controlling the solar power generation was significantly enhance the performance, and maintenance of the solar power plant. In this work explicitly argue advances IoT technique to increase output result of solar power generation at the system level. Covering turning the photovoltaic system in the position of maximum sunlight, obtaining significant available power obtained from the solar PV array and significant battery health management by using sophisticated distribution control (SDC) and independent component analysis techniques (ICA).The simulation work done under with the MATLAB software using proposed SDC and ICA logics the simulation results demonstrate the efficiency of the proposed method and its ability to track the maximum power of the PV panel. Over 97% efficiency achieved by using SDC and ICA methods.
机译:这些天,人民更加担忧尊重石油产品能源和保护问题在任何其他时间对发电网络和可再生电力资源造成的。在可再生电力资源中,太阳能和风车发电是必不可少的竞争对手。光伏模块另外具有适度的变性效果。一般系统价格利用显着的生产力控制减少,这是利用MPPT程序确定来自太阳能光伏阵列模块的最重要可实现的能量。现有的太阳能发电同样具有当日产出的负担,从天然太阳辐射较少介绍。通过利用物联网(物联网)监测和控制的策略显着提高太阳能发电量和太阳能发电厂的维护。在这项工作中,明确地争辩说明IOT技术可以提高系统级别的太阳能发电的输出结果。覆盖光伏系统在最大阳光下的位置,通过使用复杂的分布控制(SDC)和独立的分量分析技术(ICA)获得从太阳能光伏阵列和显着的电池健康管理获得的显着可用功率。用来完成的模拟工作使用所提出的SDC和ICA逻辑的MATLAB软件仿真结果表明了所提出的方法的效率及其跟踪PV面板最大功率的能力。通过使用SDC和ICA方法实现超过97%的效率。

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