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After the power control for good users has been solved, we subsequently discuss the power control strategy for interfering users.
First, we consider the power control for good users which generally have a much better achieved SINR than average.
Since the RB allocation for good users is easy to implement, here in the following, we present a detailed description on how the RB allocation for 'interfering users', that is, to determine the ' δ-element group' with proper RB assignments.
Concerning the original problem (6) for good users, we let C l denote the number of good users in the l-th cell and then apply the approximation log (1+x)≈ logx for these users with large x.
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Specifically for the good users, we let all cells share the same RBs for them due to their low inter-cell interference and relatively large signal strength.
More specifically, the first part of the overall spectrum is reserved for the good users, while the rest part of the spectrum is reserved for the interfering users.
Specified for the good users, the dedicated frequency spectrum in terms of RBs is equally assigned to the users within each cell.
For the good users, a specified power allocation scheme is presented via using geometric programming (GP) [19] as well as a universal frequency reuse strategy.
With this method, universal frequency spectrum reuse is deployed for all good users in different cells, while a δ-element semiorthogonal RB allocation strategy is proposed for interfering users.
"But what is pivotal here is whether the redesign makes for a good user experience".
It's like del.icio.us, except for the physical goods users own.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com