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Performance evaluation of classical and fuzzy logic control techniques for brushless DC motor drive

机译:无刷直流电机驱动器经典和模糊逻辑控制技术的性能评价

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High efficiency due to reduced losses, low maintenance and low rotor inertia of the brushless dc (BLDC) motor have increased the demand of BLDC motors in high power servo and robotic applications. Since fuzzy logic with human like but systematic property can convert the linguistic control rules based on expert knowledge into automatic control strategy, it can be well applied to control the systems with uncertain or unmodelled dynamics. In view of fuzzy logic merits, this paper proposes three types of fuzzy logic controllers for BLDC motor drive using advanced simulation model and presents a comparative study of performance specifications of classical PI and PID controllers and three fuzzy logic controllers. The three fuzzy logic controllers considered are PI-like fuzzy logic controller (PI-Like FLC), Hybrid fuzzy logic controller (HFLC) and integrated fuzzy logic controller (IFLC). The steady state and dynamic characteristics of speed and torque are effectively monitored and analyzed using the proposed model. The aim of fuzzy logic controllers is to obtain improved performance in terms of disturbance rejection or parameter variation than obtained using classical controllers. In the HFLC, the proportional term of the traditional PID controller is replaced with an incremental fuzzy logic controller. For the PI-Like FLC, the output of the controller is modified by a rule base with the error and change of error of the controlled variable as the inputs. The IFLC is constructed by using Fuzzy logic controller and PID controller. A performance comparison of classical and fuzzy logic controllers has been carried out by several simulations at different speeds and different load conditions.
机译:由于降低的损耗,无刷直流(BLDC)电机的低维护和低转子惯性导致的高效率增加了大功率伺服和机器人应用中BLDC电机的需求。由于具有人类的模糊逻辑,但系统性质可以将基于专业知识的语言控制规则转换为自动控制策略,因此可以很好地应用于使用不确定或未刻度的动态控制系统。鉴于模糊逻辑优点,本文提出了一种使用先进仿真模型的BLDC电机驱动的三种类型的模糊逻辑控制器,并提出了古典PI和PID控制器和三种模糊逻辑控制器的性能规范的比较研究。考虑的三个模糊逻辑控制器是类似PI样模糊逻辑控制器(类似PI样FLC),混合模糊逻辑控制器(HFLC)和集成模糊逻辑控制器(IFLC)。使用所提出的模型有效地监测和分析速度和扭矩的稳态和动态特性。模糊逻辑控制器的目的是在干扰抑制或参数变化方面获得改进的性能,而不是使用经典控制器获得。在HFLC中,用增量模糊逻辑控制器替换传统PID控制器的比例项。对于PI样FLC,控制器的输出由规则库进行修改,其中误差和受控变量的错误变化为输入。 IFLC是通过使用模糊逻辑控制器和PID控制器构建的。经典和模糊逻辑控制器的性能比较已经通过不同速度和不同负载条件的多个模拟进行。

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