现代电梯群模糊控制器的设计与实现

M. Rashid, N. A. Rashid, A. Farouq, M. Ataur Rahman
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引用次数: 15

摘要

电梯技术的发展是在高度考虑乘客满意度和电梯最佳性能的情况下,为所要求的乘客楼层提供服务。针对这一问题,本文重点研究了基于模糊算法的电梯群控制器的开发。通过在电梯系统中引入模糊控制器,实现对电梯客流密度的控制,使乘客的候车时间控制在合理的范围内。为了提高电梯群的性能,在一组模糊规则中引入了三个主要的语言变量。这些包括平均等待时间(AWT)、功耗(PC)和楼层流量(FT)。客流量较大时,模糊控制值越低,楼层优先级的重要性越低,预计到达时间越小。通过仿真,以图形化的方式验证模糊系统的优先级,同时利用PIC装置作为控制器对电梯系统的实际样机进行编程。在此基础上,根据实际情况制定了一套模糊规则;主要是最小化等待时间和能量消耗。当注册了几个大厅请求时,电梯控制器将决定哪一部电梯将服务哪一个进入的大厅请求。为了将其工作与实际电梯服务相结合,利用MATLAB™模糊逻辑工具箱对20层楼的四厢电梯控制器进行了计算机仿真,并实现了3厢4层电梯控制器的原型实验模型。
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Design and implementation of fuzzy based controller for modern elevator group
The elevator technologies are developed to serve the requested passenger's floors with high consideration of passengers' satisfaction and elevator optimal performance. Responding to the issue, this paper focuses on development of an elevator group controller based on fuzzy algorithm. By introducing a fuzzy controller in an elevator system, this system is developed to manage the required passenger traffic density keeping passenger waiting times within reasonable limits. To increase the performance of the elevator group three major linguistic variables are introduced within a set of fuzzy rules. These include the average waiting time (AWT), power consumption (PC), and floor traffic (FT). When the passenger traffic is high, the low fuzzy control values reduce the importance of priority of floors rather the estimated arrival time is to be minimized. The simulation was accomplished to check the priority of fuzzy system graphically while the actual prototype of elevator system is programmed by PIC device as a controller. As a result a set of fuzzy rules was drawn based on practical considerations; mainly minimization of waiting time and energy consumption. When a few hall requests are registered, the elevator controller will decide which one of the elevators will serve which of the incoming hall requests. In order to manifest the work with actual elevator service, a computer simulation of a four-cars-elevator controller in a twenty storied building is accomplished by using MATLAB™ fuzzy logic toolbox and implements the prototype experimental model of a 3 car 4 storied.
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