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Theoretical and Experimental Investigation of Brake Energy Recovery in Industrial Loads

机译:工业负载中制动能量回收的理论和实验研究

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The issue of calculating the energy saving amount due to regenerative braking implementation in modern AC and DC drives is of great importance, since it will decide whether this feature is cost effective. Although several works have been presented in this subject, they are concentrated on the case of electric vehicles because of the higher energy amounts or the need for more extended autonomy. However, as the increase of the electric energy cost at the Hellenic industrial sector, the need for advanced energy saving techniques emerged in order to cut down operational costs. To this direction, this paper presents a theoretical, simulation and experimental investigation on the quantization of energy recovery due to regenerative braking application in industrial rotating loads. The simulation and the experimental processes evaluate the theoretical calculations, where it is highlighted that annual energy saving may become higher than 10% even for small industrial loads, making the implementation of commercial regenerative braking units rather attractive. Finally, a power electronic conversion scheme is proposed for the storage/exploitation of the recovered energy amount.
机译:由于现代交流和直流驱动器中采用再生制动,因此计算节能量的问题非常重要,因为它将决定该功能是否具有成本效益。尽管已在该主题上进行了几项研究,但由于能量更多或需要更大的自治权,它们集中在电动汽车上。但是,随着希腊工业部门电能成本的增加,为了降低运营成本,出现了对先进节能技术的需求。为此,本文针对在工业旋转负载中再生制动的应用,对能量回收的量化进行了理论,模拟和实验研究。仿真和实验过程对理论计算进行了评估,其中强调了即使对于较小的工业负载,每年的节能量也可能会超过10%,这使得商业再生制动单元的实施颇具吸引力。最后,提出了一种电力电子转换方案,用于存储/利用回收的能量。

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