Abstract

Recent development and cost down of PV(Photovoltaic) technology drive change of power system structure. The participation of PV generation is increasing, and the size of each PV farm is getting larger. In order to integrate large PV farms into the main grid, substation for interconnection needs to be sized properly. Unlike substations for load and conventional generators, PV farm substation has an uneven utilization ratio due to characteristics of solar radiation. With proper sizing method for the capacity of the substation can reduce the building cost of facilities. A combination of an energy storage system can further reduce the capacity of the substation. Battery energy storage system (BESS) can shift the peak production of PV during the daytime to midnight. According to market circumstances, BESS can reduce further construction costs by producing profit based on time difference of electric cost. For proper sizing of substation capacity, several factors must be considered including environmental factors, market structure and BESS in the system. In this article, a series of assessment methodology is introduced to calculate the optimized capacity of substation and BESS for PV farm interconnection. The long-term solar radiation data is analyzed for a given site of the PV farm. Based on market structure, the operation of BESS is optimized to make maximum profit during operation. The iterative calculation of each step results in the calculation of the optimized capacity of BESS and substation for given PV farm size.

Highlights

  • T HE PV(Photovoltaic) generators have variable output characteristics since solar irradiance keep changing depending on weather condition

  • Hydro pumped storage system has been contributed to a balance between supply and demand of power system from the past and starting to gaining more popularity recently to suppress variability of renewable generators [2], [3]

  • This control strategy is beneficial for PV system operators when the expansion of PV plants is limited due to deferred substation upgrades.The capacity of PV plants can be increased without considering the remaining hosting capacity of the interconnected grid, while no grid reinforcement is required

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Summary

A Study on Sizing of Substation for PV with Optimized Operation of BESS

YEUNTAE YOO1, (Member, IEEE), GILSOO JANG1, (Senior, IEEE), SEUNGMIN JUNG2. (Member, IEEE).

INTRODUCTION
SOLAR IRRADIANCE DATA WITH SYSTEM MARGINAL PRICE
SIMULATION AND DISCUSSION
SIZING OF TRANSFORMERS FOR PV PLANTS
Findings
CONCLUSION
Full Text
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