A microgrid (MG) is one of the measures for enhancing the high penetration of renewable energy (RE)-based distributed generators (DGs). If a number of MGs are controlled to maintain the predetermined electricity demand including RE-based DGs as negative demand, they would contribute to supply–demand balancing of the whole electric power system. For constructing an MG economically, capacity optimization of controllable DGs against RE-based DGs is essential. Using a numerical simulation model developed on the basis of a demonstrative study on an MG using PAFC and NaS battery as controllable DGs and photovoltaic power generation system (PVS) as an RE-based DG, this study discusses the influence of the forecast accuracy of PVS output on capacity optimization. Three forecast cases with different accuracy are compared. The main results are as follows. Even with no forecast error during every 30-minute period, the ideal forecast method, the required capacity of NaS batteries reaches about 40% of the PVS capacity for mitigating the instantaneous forecast error within 30 minutes. The required capacity to compensate for forecast error is doubled under the actual forecast method. The influence of forecast error can be reduced by adjusting the scheduled power output of controllable DGs according to weather forecasts. Besides, the required capacity can be reduced significantly if the error of balancing control in an MG is acceptable for a few percent of periods, because the total periods of large forecast error are not frequent. © 2012 Wiley Periodicals, Inc. Electr Eng Jpn, 182(2): 20–29, 2013; Published online in Wiley Online Library (wileyonlinelibrary.com). DOI 10.1002/eej.22328
[1]
Yousuke Nozaki,et al.
Forecasting electric power generation in a photovoltaic power system for an energy network
,
2009
.
[2]
Hiroshi Asano,et al.
Impacts of Various Characteristics of Electricity and Heat Demand on the Optimal Configuration of a Microgrid
,
2008
.
[3]
T Kato,et al.
A study on dumping power flow fluctuation at grid-connection point of residential micro-grid with clustered photovoltaic power generation systems
,
2009,
2009 IEEE PES/IAS Conference on Sustainable Alternative Energy (SAE).
[4]
Takeyoshi Kato,et al.
Minimum Capacity of NaS Battery according to Capacity of PV System in a Microgrid under 30 min Power Balancing Control
,
2010
.
[5]
Takeyoshi Kato,et al.
Effect of Differences in Control Characteristics on Microgrid Power Balancing
,
2009
.
[6]
Koji Takano.
Demonstrative Research of Regionally Combined with Various New Energies by NEDO
,
2005
.
[7]
Shizuka Nakamura,et al.
Development and Evaluation of Control System for Microgrid Supplying Heat and Electricity
,
2008
.
[8]
Hiroshi Asano,et al.
Evaluation Method of Allowable Capacity of Intermittent Renewable Energy Sources in a Microgrid with Tie-line Power Control
,
2009
.