Integrated scheduling for intelligent regional grid based on differential evolution

Lingyun Wang, Weida Xu, Kexu Zou, Xinjie Lv, Feng Gao, Wenjun Yin
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Abstract

In this paper, a novel integrated scheduling problem for intelligent regional grid (IRG) is introduced. It comprehensively determines the on-off state of the PVs and wind fans as well as the quantity of the adjustable user load, main grid injection and the charge/discharge power of the storage units. Three optimization objectives are considered separately, i.e., to maximize the net income of the regional grid, to minimize the load fluctuating of the main grid and to maximize the efficiency of the renewable resources. In addition, a differential evolution (DE) based solution algorithm is presented to solve this kind of mixed integer programming problem. The influence of parameter settings investigated based on Taguchi method of design-of-experiment. Based on a testing problem simplified from a real-world case, the effectiveness of the proposed algorithm is demonstrated.
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基于差分进化的智能区域电网综合调度
提出了一种新的区域智能电网综合调度问题。综合确定光伏和风机的通断状态,以及可调用户负荷、主电网注入量和储能单元充放电功率的大小。分别考虑区域电网净收益最大化、主电网负荷波动最小和可再生资源效率最大化三个优化目标。此外,针对这类混合整数规划问题,提出了一种基于差分进化的求解算法。基于田口实验设计法研究了参数设置的影响。通过一个简化后的实际测试问题,验证了该算法的有效性。
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