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Design of load frequency control for power systems with BESS and generation rate constraint subject to persistent load disturbances

机译:具有BESS和发电率约束的持续负载扰动电力系统负载频率控制设计。

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摘要

The waveforms of electric power generated from renewable energy sources can vary persistently in a random manner for a long period of time. This paper presents the design of load frequency controllers for power systems that are subject to persistent disturbances by using the principle of matching and the method of inequalities. In the design formulation, the generation rate constraint is explicitly taken into account and a battery energy storage system (BESS) is used. Moreover, a PI controller in the main loop and a lag/lead controller in the BESS minor loop are designed simultaneously so as to mitigate the effects of power fluctuation caused by normal load and renewable energy sources. The principal design objective is to guarantee that the peak magnitudes of frequency deviation, generation rate and BESS power output always stay strictly within respective bounds despite all possible disturbances. The numerical results clearly show that the framework adopted here is suitable for solving such a design problem.
机译:从可再生能源产生的电力的波形可以长期随机地持续变化。本文通过匹配原理和不等式方法,提出了一种受持续扰动影响的电力系统负载频率控制器的设计方案。在设计公式中,明确考虑了发电率约束,并使用了电池储能系统(BESS)。此外,同时设计了主回路中的PI控制器和BESS次回路中的滞后/超前控制器,以减轻正常负载和可再生能源引起的功率波动影响。主要设计目标是确保尽管存在所有可能的干扰,但频率偏差,发电率和BESS功率输出的峰值幅度始终严格保持在各自的范围内。数值结果清楚地表明,此处采用的框架适合解决此类设计问题。

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