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Next, you will want to compare these measurements to your simulation results. Assuming you have functions



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Next, you will want to compare these measurements to your simulation results. Assuming you have functions simulateDataRate() and simulateEnergyEfficiency() that provide the simulated values for a given distance, you might do something like this:
% Initialize your simulation result variables
sim_data_rate = zeros(1, length(distances));
sim_energy_efficiency = zeros(1, length(distances));


% Loop through all distances
for i = 1:length(distances)
% Get the simulated results
sim_data_rate(i) = simulateDataRate(distances(i));
sim_energy_efficiency(i) = simulateEnergyEfficiency(distances(i));
end


% Calculate the difference between experimental and simulation results
diff_data_rate = data_rate - sim_data_rate;
diff_energy_efficiency = energy_efficiency - sim_energy_efficiency;


% Display the results
fprintf('Data Rate Differences: %s\n', mat2str(diff_data_rate));
fprintf('Energy Efficiency Differences: %s\n', mat2str(diff_energy_efficiency));


This is a very basic example and you will likely need to adjust it based on the specific details of your experiment. Always ensure that your SDRs are configured correctly and that your measurement and simulation functions are providing accurate results. It's also a good idea to include error checking and handling in your code to make sure it doesn't fail unexpectedly.

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