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Performance evaluation of energy efficient intelligent elevator controllers

机译:节能智能电梯控制器的性能评估

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摘要

Recently, several measures are being taken to conserve energy without degradation in performance. To achieve notable energy savings in elevator systems, in this paper we develop and experimentally test an algorithm. Operation of an elevator can be classified into two modes: running mode and stand-by mode. We design an elevator system capable of energy-saving by manipulating its speed in running mode. Speed is varied based on the difference of load carried and the counter weight. A miniature elevator model is used to carry out the experiments and to collect energy data. The algorithm is tested on different traffic patterns: 1) pre-determined pattern, and 2) random pattern. Voltage and current samples are collected from the miniature elevator model, The final energy data of variable speed system are calculated and compared with energy data of constant speed system. This proposed method results in a 3.715% energy savings for pre-determined traffic pattern and 8.7612% energy savings for random traffic patterns.
机译:近来,正在采取几种措施来节省能量而不降低性能。为了在电梯系统中实现显着的节能,在本文中我们开发并实验测试了一种算法。电梯的运行可分为两种模式:运行模式和待机模式。我们设计了一种通过在运行模式下调节速度来实现节能的电梯系统。速度根据所承载的负载和配重的差异而变化。微型电梯模型用于进行实验和收集能量数据。该算法在不同的流量模式下进行了测试:1)预定模式,以及2)随机模式。从微型电梯模型中采集电压和电流样本,计算出变速系统的最终能量数据,并将其与恒速系统的能量数据进行比较。该建议方法可为预定交通模式节省3.715%的能源,而为随机交通模式节省8.7612%的能源。

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