Title :
Accurate Component Model Based Optimal Control for Energy Storage Systems in Households with Photovoltaic Modules
Author :
Yanzhi Wang ; Xue Lin ; Pedram, Massoud
Author_Institution :
Dept. of Electr. Eng., Univ. of Southern California, Los Angeles, CA, USA
Abstract :
Integrating residential photovoltaic (PV) power generation and energy storage systems into the Smart Grid is an effective way of utilizing renewable power and reducing the consumption of fossil fuels. This has become a particularly interesting problem with the introduction of dynamic electricity energy pricing models since electricity consumers can use their PV-based energy generation and controllable energy storage devices for peak shaving on their power demand profile from the grid, and thereby, minimize their electricity bill cost. A realistic electricity price function is considered in this paper with billing period of a month, comprised of both the energy price component and the demand price component. Due to the characteristics of the realistic electricity price function and the energy storage capacity limitation, the residential storage control algorithm should properly account for various energy loss components during system operation, including the energy loss components due to rate capacity effect in the storage system as well as power dissipation in the power conversion circuitries. A near-optimal storage control algorithm is proposed accounting for these aspects, based on the PV power generation and load power consumption prediction results in the previous papers. The near-optimal control algorithm, which controls charging/discharging schemes of the storage system, is effectively implemented by solving a convex optimization problem at the beginning of each day with polynomial time complexity. Experimental results demonstrate that the proposed near-optimal residential storage control algorithm achieves up to 36.0% enhancement in electricity cost reduction than the baseline control algorithm.
Keywords :
convex programming; domestic appliances; electricity supply industry; photovoltaic power systems; power consumption; power generation control; power generation economics; renewable energy sources; smart power grids; PV power generation; baseline control algorithm; charging-discharging scheme; component model based optimal control; convex optimization problem; demand price component; dynamic electricity energy pricing model; electricity bill cost; electricity consumer; electricity cost reduction; electricity price function; energy loss components; energy storage capacity limitation; energy storage device; energy storage system; fossil fuel; household; integrating residential photovoltaic power generation; load power consumption prediction; near-optimal storage control algorithm; photovoltaic module; polynomial time complexity; power conversion circuitry; power demand profile; renewable power generation; residential storage control algorithm; smart grid; Batteries; Convex functions; Electricity; Power demand; Power generation; Smart grids; Photovoltaic system; energy storage system; optimal control;
Conference_Titel :
Green Technologies Conference, 2013 IEEE
Conference_Location :
Denver, CO
Print_ISBN :
978-1-4673-5191-1
DOI :
10.1109/GreenTech.2013.13