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The total available bandwidth is divided in subfrequency bands or subcarriers.
Also, the total bandwidth is divided in half between the two signals s a and s b.
In the USA, the total bandwidth is divided in to seven 10-MHz bandwidth channels mainly of two types, i.e., control channel (CCH) and service channels (SCHs), while the remaining 5 MHz is dedicated as the guard band.
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A tree depth of four was selected, where in the finest level the available bandwidth was divided in 16 subbands.
In [11], the FH scheme can be visualized as a "top-down" approach where a given bandwidth is divided into multiple candidate subcarriers in multistages according to the predetermined moduli set (see [11, Figure 2]).
In this scheme, bandwidth is divided into two orthogonal channels: a data and a control channel.
Similarly, in conventional FBMC systems, bandwidth is divided into equal subbands.
We assume the CRN uses OFDM modulation mode, in which the total bandwidth is divided into N={1,2,⋯,N} orthogonal subcarriers and ∀n∈N.
In our CFFR strategy, the bandwidth is divided into cluster-centre (W c ) and cluster-edge bands (W e ).
In OFDM, the entire signal bandwidth is divided into a number of narrower bands or orthogonal subcarriers, and signal is transmitted over those bands in parallel.
Figure 1 Structure of DL-PUSC permutation in WiMAX, where the transmission bandwidth is divided into 60 clusters of 14 sub-carriers over two symbols each.
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