📄 bitload.m
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function [bits_alloc,energy_alloc] = BitLoad(subchan_gains,total_bits,num_subc,gap,noise,M)
% Bit Loading Algorithm
% ---------------------
%
% Inputs :
% subchan_gains : SubCarrier Gains
% total_bits : Total Number of bits
% num_subc : Number of Subcarriers
% gap : Gap of the system
% noise : Noise Power
% M : Max Constellation Size
% Outputs:
% bits_alloc : Bits allocation for each subchannel
% power_alloc : Total Power allocation
% ---------------------------------------------------------------
% Compute SNR's for each channel
SNR = ComputeSNR(subchan_gains,noise,gap);
% This function just initializes the system with a particular bit
% allocation and energy allocation using Chow's Algorithm. This is
% further efficientize using Campello's Algorithm
[bits_alloc, energy_alloc] = chow_algo(SNR,num_subc,M);
% Form the Energy Increment Table based on the present channel
% gains for all the subchannels in order to be used by Campello
% Algorithm
energytable = EnergyTableInit(SNR,M);
% Efficientize the algorithm using the Campello's algorithm
[bits_alloc,energy_alloc] = campello_algo(bits_alloc,energy_alloc,energytable,total_bits,num_subc,M);
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