微电网
控制理论(社会学)
控制器(灌溉)
超级电容器
电压
PID控制器
被动性
控制系统
电池(电)
计算机科学
工程类
控制工程
控制(管理)
电容
功率(物理)
电气工程
温度控制
农学
电极
化学
人工智能
物理化学
物理
生物
量子力学
作者
Bhaskara Rao Ravada,Narsa Reddy Tummuru
标识
DOI:10.1109/tec.2020.2982425
摘要
A non-linear control structure for a Photovoltaic (PV), battery and supercapacitor based stand-alone DC-microgrid is presented in this paper. Most of the conventional PI-based linear control structures reported in the literature have been designed around a single operating point and also supercapacitor voltage has not been regulated. Though supercapacitor voltage is regulated in some of the works, a dedicated controller has been used which increases controller count and makes designing/tuning of controllers together for desired system performance complicated. However, due to self-discharge or frequent discharge during operation, supercapacitor voltage can reach the lowest value which affects controller performance and even makes the system unstable. So, a robust non-linear controller: Interconnection Damping Assessment-Passivity Based Controller (IDA-PBC) is implemented as an outer loop controller to regulate DC-link and supercapacitor voltages. Also, a Finite Control Set-Model Predictive Control (FCS-MPC) which is intuitive in nature is implemented as inner current controllers. The proposed control structure is digital-friendly and can address the limitations of linear PI-control structure such as (i) Controller conflicts in designing the multiple controllers, (ii) Small region of stability (iii) Supercapacitor voltage regulation. Finally, the proposed control structure is verified through simulation and experimental results.
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