++</sup> 算法對港區(qū)能源潛力進(jìn)行場景聚類,對所提出的能量流開閉環(huán)混合控制策略在典型的源荷場景下進(jìn)行驗證。結(jié)果表明,所提出的控制策略在4個典型場景下平均降低 12.04% 的運(yùn)營成本,減少 5.15% 的 CO<sub>2</sub> 排放,以及提高 14.28% 的清潔能源利用率。-龍源期刊網(wǎng)" />

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含柔性互聯(lián)的港口綜合能源系統(tǒng)能量流開閉環(huán)混合控制策略

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中圖分類號:U653;TM732 文獻(xiàn)標(biāo)志碼:A

Abstract: To solve the problems of high energy cost and high carbon emission in ports,an open-loop and closed-loop hybrid control strategy involving hydrogen-electricity energy flow is proposed based on the integrated energy system of“source-grid-load-storage”. With the goal of optimal economy,in view of the energy-load imbalance of the port,flexible interconnection equipments and hydrogen-electricity energy storage systems are introduced to realize the energy balance scheduling at spatial and temporal scales,and the utilization rate of clean energy in ports is improved through hydrogen-electricity energy flow conversion. Considering the constraints of electric energy storage,flexible interconnection,power grid flow,hydrogen energy equipment,etc.,an open-loop and closed-loop hybrid control model of energy flow in integrated energy systems is constructed. The second-order cone relaxation method is used to convert the nonlinear constraints of power grid flow,and the control model is solved using the commercial solver CPLEX. Taking a port area of Ningbo Zhoushan Port as the research object,the scenario clustering of the energy potential in the port area is implemented using K -means ++ algorithm,and the proposed energy flow open-loop and closed-loop hybrid control strategy is verified in typical source-load scenarios. The results show that the proposed control strategy can reduce the operating cost by 12.04% ,reduce CO (204號 2 emissions by 5.15% ,and improve the utilization rate of clean energy by 14.28% on average in four typical scenarios.

Key words: green port; integrated energy system;energy flow hybrid control; second-orde1cone relaxation

0引言

90% 外貿(mào)貨物通過港口進(jìn)出,導(dǎo)致港口成為高能耗區(qū)域[1]。(剩余14146字)

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