Scheduling method for aggregated photovoltaic‐battery systems considering information notified by distribution system operator

Author:

Hyodo Fumiya1,Sato Yuki1,Masuta Taisuke1,Tayjasanant Thavatchai2

Affiliation:

1. Department of Electrical and Electronic Engineering Faculty of Science and Technology Meijo University Nagoya Japan

2. Chulalongkorn University Bangkok Thailand

Abstract

AbstractIn recent years, the aggregation business has gained a lot of attention in Japan. Aggregators will make contracts with customers with photovoltaic (PV) power systems and battery energy storage systems (BESSs) including electric vehicles (EVs) to participate in electricity markets. Aggregators might have to pay electricity supply‐demand imbalance charges when generated and consumed energies contracted at the day‐ahead supply‐demand market are different from those at the current day operation due to distribution network constraints such as voltage and power flow limitations. Therefore, the information on network constraints is very important for aggregators to determine their day‐ahead schedules. In this paper, we evaluated the relationship between aggregator supply‐demand schedules and the distribution system operation. It was assumed that the reverse power flow limitations due to network constraints are notified to the aggregators by distribution system operator (DSO). Two cases of the aggregators’ schedules of PV systems and stationary BESSs were compared in the simulations. In addition, aggregator strategies for making adequate schedules were evaluated.

Publisher

Wiley

Subject

Electrical and Electronic Engineering,Energy Engineering and Power Technology

Reference23 articles.

1. Ministry of Economy Trade and Industry: «Long‐term Energy Supply and Demand Outlook» https://www.enecho.meti.go.jp/committee/council/basic_policy_subcommittee/mitoshi/pdf/report_01.pdf(in Japanese)

2. New Energy and Industrial Technology Development Organization: «NEDO PV Challenges» https://www.nedo.go.jp/content/100575154.pdf(in Japanese)

3. «Renewable Energy Project Data» https://www.fit‐portal.go.jp/PublicInfoSummary(in Japanese)

4. Coordinated Operation of Battery Energy Storage System and Thermal Generators for Supply-Demand Balance Maintenance and Efficient Use of Photovoltaic Energy

5. TakahashiK MasutaT UdawalpolaR LiyanageKM OhtakeH Simultaneous Operation Scheduling of Generators and Battery Energy Storage System based on Actual and Forecasted Photovoltaic Power Outputs.Proc. of 2019 International Conference on Smart Energy System and Technologies (SEST) Porto Portugal 2019.

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