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The results show that the ANN-based decision-making system operates the battery efficiently to achieve the minimum electricity bill.
This paper extends the Pinch Analysis concept used in Process Integration to determine the minimum electricity targets for systems comprising hybrid renewable energy sources.
With given power source and demand data for an HPS, the minimum outsourced electricity supply and the minimum electricity storage capacity required can be determined through a two-step optimisation.
The results show that the maximum annual solar power efficiency of the novel system is 13.6%, 1.3% higher than that with the HTF, and the minimum electricity cost is 0.266€/kWh, 0.094€/kWh lower than that with the HTF.
Both sequential and simultaneous design approaches are presented to determine the minimum electricity cost and the minimum total annual cost, respectively, as well as the required energy storage capacity.
"Optimal architecture" refers to an architecture that is optimal based on several criteria: its performance (in terms of an energy efficient product with minimum electricity consumption, minimum levels of sound power and pressure, minimum required dimensions (with the lowest possible weight)) and minimum price of the product.
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The effects of the losses on the minimum outsourced electricity targets and the storage capacity are evaluated.
In optimum circumstances, fossil fuel and nuclear plants deliver a constant supply, which meets the system's minimum daily electricity demand.
For a tank temperature of 35 °C, ideal hydraulic retention times, in terms of achieving a minimum levelised electricity cost, were found to range from 29.9 to 33 days.
The minimum levelised electricity cost (LEC) for a stand-alone solar parabolic dish power plant with the clean development mechanism (CDM) is found to be INR 9.83 ($ 0.197, 1$ = INR 50) at Indore with payback period of 10.63 years with cost benefit ratio of 1.48.
One energy-saving measure is a change in the rovers' fault-protection systems, so that in the event of malfunctions, their automatic responses involve a minimum of electricity-draining operations.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com