Sliding Mode Control of AC/DC Bridgeless Converter using Piezoelectric Energy Harvesting System

Ahmed Mosa Musleh, Moayed Almobaied
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Abstract

In this paper, a sliding mode controller has been applied to control AC/DC bridgeless converter which is widely used in many low voltage renewable energy applications. This promising technology has been perfectly applied to many low output AC voltage sources as in Piezoelectric harvesting energy, heat transfer transducers, and small wind turbine panels. Designing stabilized controllers to increase the efficiency and reliability of these converters has been an area of intense research interest in designing the required circuits of renewable energy development. A well-known bridge rectifier is generally used in most types of conventional AC/DC converters in order to convert the AC voltage from the source to a full wave DC rectified signal. However, these converters are not conductive for millivolt output level of renewable sources. The proposed approach consists of both Boost and Buck-Boost converters with two controllers in order to maximize the useful output energy from the source. In this work, the traditional PI controllers are used as a first approach. Then the Sliding Mode Controller (SMC) technique has been integrated with PI in order to stabilize the converter and improve its efficiency. Here, a comparative study using simulations in MATLAB is presented to insure the effectiveness and robustness of the proposed SMCPI controller under some external disturbances.
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基于压电能量收集系统的交/直流无桥变换器滑模控制
本文采用滑模控制器控制广泛应用于低压可再生能源领域的交/直流无桥变换器。这种有前途的技术已经完美地应用于许多低输出交流电压源,如压电收集能量,传热换能器和小型风力涡轮机板。设计稳定的控制器以提高这些变换器的效率和可靠性一直是设计可再生能源开发所需电路的一个热门研究领域。众所周知,桥式整流器通常用于大多数类型的传统AC/DC转换器,以将交流电压从源转换为全波直流整流信号。然而,这些转换器不导电毫伏输出水平的可再生能源。该方法由两个控制器的Boost和Buck-Boost转换器组成,以最大限度地提高源的有效输出能量。在这项工作中,传统的PI控制器被用作第一种方法。然后将滑模控制器(SMC)技术与PI技术相结合,以稳定变换器并提高其效率。为了验证所提出的SMCPI控制器在一定外部干扰下的有效性和鲁棒性,在MATLAB中进行了仿真对比研究。
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