Suzhou Electric Appliance Research Institute
期刊號: CN32-1800/TM| ISSN2097-6623

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含光伏電源的微電網(wǎng)光儲荷抗功率擾動控制

來源:電工電氣發(fā)布時間:2026-02-26 15:26 瀏覽次數(shù):1

含光伏電源的微電網(wǎng)光儲荷抗功率擾動控制

劉海霞
(科大國創(chuàng)新能科技有限公司,安徽 合肥 230000)
 
    摘 要:微電網(wǎng)存在多個光伏電源的情況下,其光伏發(fā)電受光照度與溫度影響造成的功率擾動,會導(dǎo)致傳統(tǒng)集中式單一光儲荷控制存在明顯不足。提出了含光伏電源的微電網(wǎng)光儲荷抗功率擾動控制方法,該方法構(gòu)建了微電網(wǎng)光伏電源模型,針對光伏電源輸出功率的間歇性、隨機性和波動性,采用最大功率點跟蹤算法中的擾動觀察法動態(tài)調(diào)整其運行點;對于儲能裝置,依據(jù)其荷電狀態(tài)和微電網(wǎng)功率需求調(diào)整充放電功率,實現(xiàn)功率擾動控制。在平穩(wěn)控制功率的前提下,采用多智能體一致性算法開展協(xié)調(diào)控制,將光伏電源、儲能裝置和負(fù)荷視為獨立智能體,通過迭代更新各智能體狀態(tài)變量,使其趨于一致,從而得到各部分功率參考值,實現(xiàn)微電網(wǎng)光儲荷的抗功率擾動控制。實驗結(jié)果表明:該方法能有效協(xié)調(diào)功率分配,光伏電源功率圍繞100 kW 上下波動,臨近80 min 時達(dá)到較高峰值,頻率變化率處于較為穩(wěn)定的狀態(tài),驗證了其在微電網(wǎng)穩(wěn)定控制中的優(yōu)越性。
    關(guān)鍵詞: 光伏電源;微電網(wǎng);儲能裝置;負(fù)荷需求;擾動控制;多智能體一致性算法
    中圖分類號:TM615 ;TM761+.2     文獻標(biāo)識碼:A     文章編號:2097-6623(2026)02-0018-05
 
Anti-Power Disturbance Control of Photovoltaic–Storage–Load
Microgrid with Photovoltaic Power Sources
 
LIU Hai-xia
(GuoChuang Renewable Energy Technology Co., Ltd., Hefei 230000, China)
 
    Abstract: In the case of multiple photovoltaic power sources in the microgrids, the power disturbance caused by the influence of light intensity and temperature on photovoltaic power generation can lead to significant deficiencies in traditional centralized single photovoltaic-storage-load control. This paper proposes a control method for photovoltaic-storage-load in microgrids with photovoltaic sources to resist power disturbances, which constructs a photovoltaic power source model for microgrids. In response to the intermittency, randomness, and variability of photovoltaic power output, the disturbance observation method in the maximum power point tracking algorithm is employed to dynamically adjust its operating point. For energy storage devices, the charging and discharging power is adjusted based on their state of charge and the power demand of the microgrid, achieving power disturbance control. Under the premise of stable power control, a multi-agent consensus algorithm is used for coordinated control, treating photovoltaic power sources, energy storage devices, and loads as independent agents. By iteratively updating the state variables of each agent to make the converge to a conststant state, thus obtaining power reference values for each component and achieving anti-power disturbance control for photovoltaic power sources, energy storage devices, and loads in microgrids. Experimental results show that this method can effectively coordinate power distribution. The power of the photovoltaic source fluctuates around 100 kW, reaching a higher peak near 80 min, with a relatively stable frequency change rate, verifying its superiority in stable control of microgrids.
    Key words: photovoltaic power source; microgrid; energy storage device; load demand; disturbance control; multi-agent consensus algorithm
 
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