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Optimal capacity of shared energy storage and photovoltaic system for cooperative residential customers

机译:合作住宅客户共用储能和光伏系统的最佳能力

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In this paper, we consider a smart grid network where customers have their own photovoltaic generation system (PVS) but an energy storage system (ESS) is shared. The energy generated in PVS located at customer n's home can be immediately used for customer n at that time or be stored in the shared ESS. Customers all belongs to the same entity or different entities with common interest and seek a common goal. We find an optimal capacity of shared ESS and individual photovoltaic generation system minimizing the total energy cost. For a predetermined daily pattern of generation and load, we formulate an liner programming problem to decide an optimal capacity of the shared ESS minimizing the total energy cost. The total energy cost is the sum of expenses to buy electricity and to install the shared ESS. Numerical examples show that as compared with the case of individually installed ESS for each customer, the shared ESS can decrease the electricity demand to the main grid and the total energy cost is slightly reduced while meet the demand of electricity by appliances.
机译:在本文中,我们考虑了一个智能电网网络,客户拥有自己的光伏发电系统(PVS),但共享能量存储系统(ESS)。位于客户N's Home的PVS中产生的能量可以立即用于客户N,或者存储在共享ESS中。客户都属于具有共同兴趣的同一实体或不同的实体,并寻求共同目标。我们发现共享ESS和单独光伏发电系统的最佳能力最小化总能量成本。对于预定的每日生成和负载模式,我们制定了一个衬里编程问题,以确定分享ES的最佳容量,从而最大限度地减少总能量成本。总能源成本是购买电力的费用和安装共享ESS的总和。数值例子表明,与每个客户的单独安装的ESS相比,共用ESS可以将电力需求降低到主电网,并且总能源成本略有降低,同时满足电器的电力需求。

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