D. Muñoz, C. Llanos, M. Ayala-Rincón, R. V. van Els
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引用次数: 3
摘要
电梯系统由电梯群控系统(EGCS)和微处理子系统(LCS)组成,该子系统实现了每台电梯的局部控制系统(LCS)。本文描述了在基于Spartan 3fgpa的板上集成实现的电梯系统的五种调度算法的验证。重点是减少面积和提高性能。整个系统由多个实现调度算法的LCS、基于RS485的网络和虚拟环境VEI (virtual elevator interface system)组成。后者包括一个模拟器/监控系统和一个基于模糊逻辑(FEGCS)的EGCS。FEGCS在PC上运行,根据不同的流量情况,确定在每个LCS中运行的最佳算法,从而减少用户的等待时间和功耗。这种方法的新颖之处在于,LCS能够运行几种适合不同客流情况的调度算法,而FEGCS只需要确定在每个LCS中运行的最佳算法。VEI允许设计人员以灵活的方式测试和验证算法在不同交通情况下的性能。
FPGA implementation of dispatching algorithms for Local Control of Elevator Systems
An elevator system consists of an elevator group control system (EGCS) and a micro-processed sub-system that implements a local control system (LCS) for each elevator. This paper describes the validation of five dispatching algorithms for an elevator system that was implemented on Spartan 3 FGPA based boards in an integrated approach. The focus was on area reduction and performance improvement. The overall system is composed of several LCS, which implement the dispatching algorithms, an RS485 based network and a virtual environment called virtual elevator interface system (VEI). The latter includes a simulator/monitoring system and an EGCS based on fuzzy logic (FEGCS). The FEGCS runs on a PC and, under different traffic situations, determines the best algorithm to be run in each LCS reducing the user waiting time and the power consumption. The novelty of this approach is that the LCSs are capable to run several dispatching algorithms that are suitable for different passenger traffic situations, while the FEGCS only must determine the best algorithm to be run in each LCS. The VEI allows the designer to test and validate in a flexible way the algorithm performance for different traffic situations.