Question
A power company has a maximum daily capacity of 5 million kilowatt-hours (kWh) of electric power available. The daily demand for power from customers is
A power company has a maximum daily capacity of 5 million kilowatt-hours (kWh) of electric power available. The daily demand for power from customers is the total of the peak hours demand and off-peak hours demand. The following functions estimate the high-demand (peak) hours and low-demand (off-peak) hours (unit in millions of kWh):
High demand : 10 0.08ph + 0.007pl
Low demand : 9 0.18pl + 0.004ph , where variable pl represents the price per kilowatt-hour during low-demand hours, and ph is the price per kilowatt-hour during high-demand (peak) hours. Formulate and solve a nonlinear programming model to determine the price structure (per kWh) that will maximize revenue.
(I have to make one word file which clearly states the objective function, decision variables, constraints, and solution of all questions 2. one workbook which contains the spreadsheet file with formula and answer report for all questions (using separate worksheets for different questions) here is photo of question.
20Assignment 2019-20B%20(2).pdf A power company has a maximum daily capacity of 5 million kilowatt-hours (kWh) of electric power available. The daily demand for power from customers is the total of the peak hours demand and off-peak hours demand. The following functions estimate the high-demand (peak) hours and low-demand (off-peak) hours (unit in millions of kWh): High demand : 10 - 0.08p. + 0.007p, Low demand :9-0.18p, + 0.004pn , where variable p, represents the price per kilowatt-hour during low-demand hours, and pn is the price per kilowatt-hour during high-demand (peak) hours. Formulate and solve a nonlinear programming model to determine the price structure (per kWh) that will maximize revenue. e Date: 5pm, 15 March 2020 (Sunday) ading is based on the total score of 100. Late penalty: deduct 10% of the scoreStep by Step Solution
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