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The Research on Second-Order ADRC Algorithm of Using Wind Turbine Virtual Inertia to Participate in Primary Frequency Regulation in a Small Stand-Alone Microgrid

机译:使用风力涡轮机虚拟惯性的二阶ADRC算法在小型独立微电网中参与初级频率调节的二阶ADRC算法

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摘要

In order to improve the transient stability of frequency in a small stand-alone microgrid (SSM), this paper takes a SSM composed of a direct-drive permanent magnet synchronous generator (D-PMSG) and a micro gas turbine (MGT) as the background and uses wind turbine generator (WTG) virtual inertia (VI) to participate in the primary (short-term) system frequency regulation. First of all, this paper constructs a grid-connected model composed of a WTG and a MGT, analyzes the WTG virtual inertia frequency regulation mechanism, and explains the principle of proportional-differentiation (PD) virtual inertia control (VIC) and its shortcomings. Secondly, the paper introduces the structure principle of n-order active disturbance rejection control (ADRC) and deduces the design process of second-order ADRC-VIC. Finally, through the simulation and experimental verification, comparing the frequency perturbation of without-VIC, PD-VIC, and ADRC-VIC, it is concluded that PD-VIC and ADRC-VIC both can use the WTG virtual inertia to participate in the primary frequency regulation. The frequency regulation effect of ADRC-VIC is better than PD-VIC, ADRC-VIC can extend the rotor speed recovery time and avoid overshoot, and its frequency fluctuation amplitude and settling time are obviously improved, and ADRC-VIC can effectively avoid the overshoot phenomenon of the MGT output power.
机译:为了提高小型独立微电网(SSM)中频率的瞬态稳定性,本文采用由直接驱动永磁同步发电机(D-PMSG)和微燃气轮机(MGT)组成的SSM。背景和使用风力涡轮机发生器(WTG)虚拟惯性(VI)参与主要(短期)系统频率调节。首先,本文构造了由WTG和MGT组成的网格连接的模型,分析了WTG虚拟惯性频率调节机制,并解释了比例分化(PD)虚拟惯性控制(VIC)的原理及其缺点。其次,本文介绍了N阶主动扰动抑制控制(ADRC)的结构原理,并推断了二阶ADRC-VIC的设计过程。最后,通过模拟和实验验证,比较无VIC,PD-VIC和ADRC-VIC的频率扰动,得出结论,PD-VIC和ADRC-VIC都可以使用WTG虚拟惯性参与主要频率调节。 ADRC-VIC的频率调节效果优于PD-VIC,ADRC-VIC可以延长转子速度恢复时间并避免过冲,并且其频率波动幅度和稳定时间明显提高,ADRC-VIC可以有效地避免过冲MGT输出功率的现象。

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