Title :
A battery energy storage system dual-layer control strategy for mitigating wind farm fluctuations
Author :
Quanyuan Jiang ; Yuzhong Gong ; Haijiao Wang
Author_Institution :
Coll. of Electr. Eng., Zhejiang Univ., Hangzhou, China
Abstract :
Summary form only given. The intermittent power output of a wind farm is the main challenge behind increasing wind power penetration of power systems. This paper proposes a battery energy storage system (BESS) dual-layer control strategy-consisting of a fluctuation mitigation control layer and a power allocation control layer-to mitigate wind farm power output fluctuations. The fluctuation mitigation control layer calculates the power instructions for the BESS so that the combined wind farm and BESS power output meets fluctuation mitigation requirements (FMR). The layer implements a flexible first-order low-pass filter (FLF), updating the time constant of the FLF through use of a particle swarm optimization (PSO) algorithm. The power allocation control layer optimizes power instructions allocation among the battery energy storage units of the BESS. The layer´s energy management of the BESS uses a mixed-integer quadratic programming (MIQP) model, which improves reliability. Moreover, the paper compares two types of charge/discharge switching constraints to reduce the number of charge/discharge cycles, which can prolong the operational lifetime of the BESS. Finally, the effectiveness of the proposed dual-layer control strategy is verified through case studies.
Keywords :
battery storage plants; energy management systems; integer programming; low-pass filters; particle swarm optimisation; power control; power filters; power generation control; quadratic programming; wind power plants; BESS operational lifetime; FLF; FMR; MIQP model; PSO algorithm; battery energy storage system dual-layer control strategy; charge-discharge switching constraints; flexible first-order low-pass filter; fluctuation mitigation control layer; fluctuation mitigation requirements; layer energy management; mixed-integer quadratic programming model; particle swarm optimization algorithm; power allocation control layer; power instruction allocation; power systems; wind farm power output fluctuation mitigation; wind power penetration; Batteries; Control systems; Discharges (electric); Fluctuations; Resource management; Wind farms;
Conference_Titel :
PES General Meeting | Conference & Exposition, 2014 IEEE
Conference_Location :
National Harbor, MD
DOI :
10.1109/PESGM.2014.6939424