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Automatic voltage regulator design by modified discrete integral variable structure model following control

机译:通过修正离散积分变结构模型跟随控制的自动电压调节器设计

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In power systems, the automatic voltage regulator (AVR) is designed to make the terminal voltage to accurately track the deviation of the reference voltage. To achieve the desired requirements, this paper proposes the modified discrete integral variable structure model following control (MDIVSMFC) approach. The MDIVSMFC approach comprises a reference model part for specifying the design requirements and a MDIVSC part for minimizing the errors between the plant and model. The non-ideal sliding motion is introduced to take the place of the ideal sliding motion in discrete-time systems. Its existence conditions are used to adapt the proposed approach to the discrete systems. The application of MDIVSMFC to an AVR design is developed. Procedures for determining the control function, the coefficients of the sliding surface and the integral control gain are also proposed in detail. Simulation results are compared with the IEEE type-I voltage regulator to demonstrate that the proposed scheme can achieve fast and robust responses. (C) 1998 Elsevier Science Ltd. All rights reserved. [References: 19]
机译:在电源系统中,自动电压调节器(AVR)旨在使端子电压准确跟踪参考电压的偏差。为了达到预期的要求,本文提出了一种改进的离散积分变结构跟随控制模型(MDIVSMFC)。 MDIVSMFC方法包括用于指定设计要求的参考模型部分和用于最小化工厂与模型之间的误差的MDIVSC部分。引入非理想的滑动运动来代替离散时间系统中的理想滑动运动。它的存在条件用于使所提出的方法适应离散系统。开发了MDIVSMFC在AVR设计中的应用。还详细介绍了确定控制功能,滑动面系数和积分控制增益的步骤。将仿真结果与IEEE I型稳压器进行比较,以证明所提出的方案可以实现快速而稳定的响应。 (C)1998 Elsevier ScienceLtd。保留所有权利。 [参考:19]

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