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Active Power Management Scheme Based on Ramp Rate Limit Control in a Wind-Solar AC Microgrid

机译:基于斜坡速率限制控制在风力 - 太阳能AC微电网中的主动电力管理方案

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Rapid variations in weather condition or load profile, leads to high power ramp rate in a renewable energy sources (RESs) powered grid interactive microgrid. Such variations, often termed as the microgrid power ramp events (MPREs), burden the utility grid voltage and frequency regulations, and can even threaten the overall system stability. This paper presents the development of an active power management (APM) scheme, to limit the net output power ramp rate arising due to MPREs, using a battery energy storage (BES) in the wind-solar AC microgrid. The microgrid APM is carried out using a computationally efficient variable kernel width maximum correntropy criterion (VKW-MCC) adaptive filtering methodology. The charging/discharging of the BES during MPREs, is indirectly controlled through the grid side converter, based on a pre-determined positive and negative ramp rate limit (RRL). The feasibility and effectiveness of the APM scheme is verified through simulations in MATLAB platform.
机译:天气状况或负载轮廓的快速变化,导致可再生能源(RESS)供电的网格交互式微电网中的高功率斜坡速率。这种变化通常被称为微电网功率斜坡事件(MPRES),负担效用电网电压和频率规范,甚至可以威胁整体系统稳定性。本文介绍了有源电源管理(APM)方案的开发,以限制由于MPRES引起的净输出功率斜坡率,使用风力 - 太阳能AC微电池中的电池储能(BES)。 MicroGrid APM使用计算有效的可变核宽度最大正控性标准(VKW-MCC)自​​适应滤波方法进行。基于预定确定的正斜率率极限(RRL),MPRES期间BE的充电/放电间接地通过电网侧转换器间接地控制。通过Matlab平台模拟验证了APM方案的可行性和有效性。

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