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Designing of New Structure PID Controller of Boost Converter for Solar Photovoltaic Stability

机译:用于太阳能光伏稳定性升压转换器新结构PID控制器的设计

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Nowadays, the utilization of renewable energy as the source on distributed generation system is increasing. It aims to reduce reliance and power losses from utility grid and improve power stability in near loads. One example of renewable energy technology that have been highly proven on the market is solar photovoltaic (PV). This technology converts photon from sunlight into electricity. However, the fluctuation of solar radiation that often occurs become the main problem for this system. Due to this condition, the power conversion is needed to convert the change frequently in photovoltaic panel into a stable voltage to the system. Developing control of boost converter has important role to keep ability of system stabilization. A conventional PID (Proportional, Integral, Derivative) control is mostly used to achieve this goal. In this research, a design of new structure PID controller of boost converter is offered to better optimize system stability comparing to the conventional PID. Parameters obtained from this PID structure have been successfully yield a stable boost converter output at 200 V with 10% overshoot, 1.5 seconds of settling time, and 1.5% of steady-state error.
机译:如今,作为分布式发电系统源的可再生能源的利用正在增加。它旨在减少公用电网的依赖和功率损耗,提高近负载中的功率稳定性。在市场上经过高度证实的可再生能源技术的一个例子是太阳能光伏(PV)。该技术将光子从阳光转换为电力。然而,经常发生的太阳辐射的波动成为该系统的主要问题。由于这种情况,需要电力转换来将变化在光伏面板中转换为系统的稳定电压。升压转换器的发展控制具有重要的作用,可以保持系统稳定能力。传统的PID(比例,积分,衍生物)控制主要用于实现这一目标。在本研究中,提供了升压转换器的新结构PID控制器的设计,以更好地优化与传统PID比较的系统稳定性。从该PID结构获得的参数已成功产生200 V的稳定升压转换器输出,超过10%的过冲,1.5秒的稳定时间,1.5%的稳态误差。

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