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The total rate loss of cellular users is shown in Fig. 6.
A user behavior model for large-scale cellular users is introduced in [17 20].
Here, we assume that the number of cellular users is fixed, the case of varying numbers can refer to [16].
Our results show that unlike the uplink results in[17], the preferred access scheme for home and cellular users is incompatible.
The multi-objective optimization problem of maximizing the gain of D2D users and minimizing the loss of cellular users is established and transformed into single-objective optimization problem by constructing evaluation function.
As opposed to CSG access method, a shared access method which allows femtocells to allocate an adjustable number of time slots between home and cellular users is proposed in [11].
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Cellular users are uniformly distributed outdoors.
As a result, both D2D and cellular users are subject to the interference from each other.
Firstly, cellular users are randomly located within their cells and therefore experience quite different path loss [11, 12].
In the LTE-A, D2D users and cellular users are multiplexed at the same uplink channel orthogonal frequency division multiplexing (OFDM) physical RRB.
First, we see that unlike the uplink[17], the preferred access schemes for home and cellular users are incompatible, with home user preferring closed access.
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