What is a multi-area collaborative integrated energy system with shared energy storage?
A multi-area collaborative integrated energy system with shared energy storage is proposed. Day-ahead collaborative, intra-day autonomous multi-timescale rolling optimisation method. The system has advantages in terms of economy, energy efficiency and the rate of new energy consumption.
Why is energy storage important?
As a regulatory resource, energy storage is very important to the stability of power system. But differences in policy, resources and demand make renewable energy sites different in demand. The collaborative environmental value of different scale sites after the implementation of energy storage is also different.
What is a shared energy storage system?
The shared energy storage system can be divided into two parts: electricity storage and heat storage, and the inter-station energy exchange is mainly set up as an electric exchange channel and a heat exchange channel. The heat exchange channel is set as a one-way circulation flow because of its higher investment cost and slower response.
What is a collaborative environmental value-based model for re storage planning?
This paper establishes a collaborative environmental value-based model for RE storage planning, which integrates the boundary conditions of different regional factors such as natural source, low-carbon policies, and supply-demand characteristics.
Does collaborative planning influence environmental value of different scale sites?
The collaborative environmental value of different scale sites after the implementation of energy storage is also different. In view of this, the collaborative planning method is studied in this paper. Firstly, the influence factors of collaborative environment value are analyzed.
Which energy storage system has the largest capacity allocation?
The total allocation for the whole system is 1.09 × 10 4, with S1 having the largest total equipment capacity allocation of the three, occupying 31.34%, S2 and S3 28.32% and 6.50% respectively, while ES and HS occupy 25.10% and 8.74% respectively of the shared energy storage.
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