研究目的
To enhance the service life of Lead-acid batteries in standalone photovoltaic-battery power systems by mitigating life-limiting factors such as current fluctuations and surge current through a retrofittable smart hybrid energy storage plug-in module.
研究成果
The proposed SHESS plug-in module effectively mitigates lead-acid battery stress by absorbing damaging current profiles, reducing battery health cost by up to 43.8% and annual operating cost by up to 52.7%. Experimental results confirm feasibility and ease of integration into existing systems, offering a simple and cost-effective solution for enhancing battery lifetime in standalone PV systems.
研究不足
The study assumes linear proportionality between battery life cycle and health cost, neglects supercapacitor deterioration in economic analysis, and uses simplified models that may not capture all real-world complexities. The prototype is scaled-down, which might not fully represent full-scale systems.
1:Experimental Design and Method Selection:
The study uses a hybrid energy storage system combining supercapacitor and Li-ion battery with a power allocation strategy based on multi-level low-pass filters to decompose power demand into frequency components. Matlab Simulink is used for simulation, and a scaled-down prototype is built for experimental validation.
2:Sample Selection and Data Sources:
Solar irradiance data from Kuching, Sarawak, Malaysia, and estimated load profiles for a rural community of six households are used. A site survey informed the load profile estimation.
3:List of Experimental Equipment and Materials:
Components include PV arrays, lead-acid batteries, supercapacitors, Li-ion batteries, bidirectional DC/DC converters, microcontrollers (e.g., ATMEGA328P), current sensors (e.g., ACS712), and a programmable DC electronic load (BK Precision BK8500).
4:0).
Experimental Procedures and Operational Workflow:
4. Experimental Procedures and Operational Workflow: Simulations are conducted in Matlab Simulink for pulse load response and standalone system operation. Experiments involve activating the SHESS module in a scaled prototype, measuring currents, and validating power-sharing under different weather conditions (sunny and cloudy).
5:Data Analysis Methods:
Battery health cost function is used to quantitatively evaluate stress mitigation, and financial analysis estimates cost reductions. Data is logged using NI USB-6008 for experiments.
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