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Journal ArticleDOI

An Improved Optimal Sizing Method for Wind-Solar-Battery Hybrid Power System

TLDR
In this paper, an improved optimal sizing method for wind-solar-battery hybrid power system (WSB-HPS), considering the system working in stand-alone and grid-connected modes, is proposed.
Abstract
This paper proposes an improved optimal sizing method for wind-solar-battery hybrid power system (WSB-HPS), considering the system working in stand-alone and grid-connected modes. The proposed method is based on the following principles: a) high power supply reliability; b) full utilization of the complementary characteristics of wind and solar; c) small fluctuation of power injected into the grid; d) optimization of the battery's charge and discharge state; e) minimization of the total cost of system. Compared with the traditional methods, the proposed method can achieve a higher power supply reliability while require less battery capacity in stand-alone mode. And in grid-connected mode, the optimization strategy based on energy filter is further utilized to achieve the optimal battery capacity. Thus, the proposed method can achieve a much smaller fluctuation of power injected into the grid. In addition, the battery's charge and discharge state can be optimized thanks to the consideration of the battery's depth of discharge (DOD), the charge/discharge current, rate and cycles, which will prolong the battery's lifetime. A case study of WSB-HPS located in Hohhot, China is presented to verify the advantages of the proposed optimal sizing method.

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Citations
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Journal ArticleDOI

A review on recent size optimization methodologies for standalone solar and wind hybrid renewable energy system

TL;DR: This paper aims to present a comprehensive review on recent developments in size optimization methodologies, as well as a critical comparison of single algorithms, hybrid algorithms, and software tools used for sizing standalone solar and wind HRES.
Journal ArticleDOI

Sizing and Analysis of Renewable Energy and Battery Systems in Residential Microgrids

TL;DR: This paper presents a novel model based on mixed integer linear programming for the optimization of a hybrid renewable energy system with a battery energy storage system in residential microgrids in Okinawa in which the demand response of available controllable appliances is coherently considered in the proposed optimization problem.
Journal ArticleDOI

A review on configurations, control and sizing methodologies of hybrid energy systems

TL;DR: In this paper, a review on various important sectors needed to be considered while designing and implementation of hybrid energy system; this includes configurations, criteria selection, sizing methodologies and control & energy management.
Journal ArticleDOI

A Unified Control and Power Management Scheme for PV-Battery-Based Hybrid Microgrids for Both Grid-Connected and Islanded Modes

TL;DR: The proposed CAPMS is successful in regulating the dc and ac bus voltages and frequency stably, controlling the voltage and power of each unit flexibly, and balancing the power flows in the systems automatically under different operating circumstances, regardless of disturbances from switching operating modes, fluctuations of irradiance and temperature, and change of loads.
Journal ArticleDOI

Optimization and integration of hybrid renewable energy hydrogen fuel cell energy systems – A critical review

TL;DR: In this article, a meta-heuristic function is proposed with weighting of technical, economic, environmental and socio-political factors to suit the design goals for the energy system.
References
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Journal ArticleDOI

Energy storage and its use with intermittent renewable energy

TL;DR: In this article, a simple probabilistic method has been developed to predict the ability of energy storage to increase the penetration of intermittent embedded renewable generation (ERG) on weak electricity grids and to enhance the value of the electricity generated by time-shifting delivery to the network.
Journal ArticleDOI

Methodology for optimally sizing the combination of a battery bank and PV array in a wind/PV hybrid system

TL;DR: In this paper, a methodology for calculation of the optimum size of a battery bank and the PV array for a standalone hybrid wind/PV power system is developed, where long term data of wind speed and irradiance recorded for every hour of the day for 30 years were used.
Journal ArticleDOI

Generation unit sizing and cost analysis for stand-alone wind, photovoltaic, and hybrid wind/PV systems

TL;DR: In this article, the results of investigations on the application of wind, photovoltaic (PV), and hybrid wind/PV power generating systems for utilization as stand-alone systems are presented.
Journal ArticleDOI

Lead-acid-battery storage model for hybrid energy-systems

TL;DR: A new battery model developed for use in time series performance models of hybrid energy systems, based on the approach of chemical kinetics, which is specifically concerned with the apparent change in capacity as a function of charge and discharge rates.
Proceedings ArticleDOI

Future electronic power distribution systems a contemplative view

TL;DR: Several ideas for modeling, analysis, and system-level design of such systems, including power flow control, protection, stability, and subsystem interactions, are presented, especially in the presence of renewable energy sources.
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