Optimal Planning of Energy Hubs Considering Renewable Energy Sources and Battery Energy Storage System

V. Thang, Thanh-tung Ha
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引用次数: 4

Abstract

In the context of multiple energy loads, the energy hub is introduced as a unit where multiple energy carriers can be converted, conditioned, and stored to enhance the energy efficiency of the system. Therefore, this study presents an optimal planning framework, which aims the selection the invested size and time of equipment based on minimizing the life cycle cost considering renewable energy sources (RES) and battery energy storage systems (BESS). The input energies considered include the electrical energy, natural gas, solar radiation and wind that are converted to supply for output energies consisting of electricity, cooling, and heating. The planning framework with the objective function which is minimizing the life cycle cost of the project consists of the investing and operating cost of equipment, cost for purchasing energy from market (electricity, natural gas), the emission taxes cost and the replacement cost or residual value of equipment at the end of the planning period. The constraints as balance energy types, the size limit of equipment integrated into model together with binary variables make a mixed integer nonlinear programming (MINLP) planning problem. The feasibility of the proposed model and the effectiveness of renewable energy sources and BESS in optimal planning of energy hubs are tested by an assumed energy hub with the high-level algebraic modeling software, general algebraic modeling system (GAMS).
考虑可再生能源和电池储能系统的能源枢纽优化规划
在多能量负荷的情况下,引入能量枢纽作为一个单元,可以对多个能量载体进行转换、调节和存储,以提高系统的能源效率。因此,本研究提出了一个优化规划框架,旨在考虑可再生能源(RES)和电池储能系统(BESS),在最小化生命周期成本的基础上,选择设备的投资规模和时间。所考虑的输入能量包括电能、天然气、太阳辐射和风能,这些能量被转换成输出能量,包括电力、冷却和加热。以项目生命周期成本最小化为目标函数的规划框架包括设备的投资和运行成本、从市场购买能源(电力、天然气)的成本、排放税成本和规划期末设备的重置成本或残值。将平衡能量类型、设备尺寸限制等约束条件集成到模型中,再加上二元变量,构成了一个混合整数非线性规划问题。利用高级代数建模软件通用代数建模系统(GAMS),以一个假设的能源枢纽为例,验证了该模型的可行性以及可再生能源和BESS在能源枢纽优化规划中的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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