具有势能回收的橡胶轮胎门架最优能量控制

S. F. Phiri, K. Kusakana, B. Numbi
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引用次数: 1

摘要

橡胶轮胎龙门起重机(RTG)是一种通常用于港口码头将集装箱从一个位置移动到另一个位置的起重设备。然而,大多数rtg运行效率不高,因此产生了很高的能源成本。RTG起重机运行效率差的原因是,在真垂直提升过程中,设备以恒定速度运行,无论负载和/或真垂直提升如何变化,以及在集装箱下降过程中,再生的破碎能量通常通过电阻组耗散。因此,这项工作提出了一个能源管理模型,将提高RTG起重机的能源效率。首先,我们提出考虑分时电价和最大需求,对蓄电池组的可再生破断能量进行最优控制。其次,根据集装箱重量和真实垂直升力的变化,提出最优控制寄存速度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Energy Control of a Rubber Tyre Gantry with Potential Energy Recovery
The Rubber Tyre Gantry (RTG) cranes is a hoisting equipment usually used in port terminals to move shipping containers from one location to another. However, most of RTGs are operated inefficiently, hence a high energy cost is incurred. The reason of poor operation efficiency of RTG crane is that the equipment is operated at a constant speed during true vertical lift, no matter how the load and/or true vertical lift change, also during the lowering of a container, the regenerative breaking energy is usually dissipated through a resistor bank. This work therefore proposes an energy management model that would improve the energy efficiency of the RTG crane. First, we propose to optimally control the regenerative breaking energy to and from the battery bank taking into account the time-of-use tariff and maximum demand. Secondly, we propose to optimally control the hosting speed according to the variability of container weight and true vertical lift.
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