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Exact(9)
where all the involved probability terms are discrete, and whose mathematical expressions are defined in Sections 4 and 5.
The corresponding decision-fusion architecture is shown in Figure 2, where the symbols used in Figure 2 are defined in Sections 4.1 and 4.3.
One is that if ρ is regarded as a function of the transmission power of the D2D users, both the primal problem (16) and the transformed subproblem (P2) (defined in Sections 2 and 3.2, respectively) may become non-convex.
As defined in Sections 2.2 and 3.2, the packet transmission time follows a geometric distribution in (5), and the batch size is modeled by a negative binomial distribution in (10).
Particularly when it comes to the mereological operators of sum, product, etc. defined in Sections 4.2 4.4, a free logic would arguably provide a more adequate background (see Eberle 1970, Simons 1991), as would a logic equipped with the apparatus of plural quantification (Lewis 1991).
Then, for every function f ∈ L ∞, s 2, the sharp inequality ∥ D ± k f ∥ L ∞ ⩽ ∥ D − k Φ k, s ∥ L ∞ ( R ) ∥ Φ k, s ∥ L ∞ ( R ) 1 − λ ∥ f ∥ L ∞ 1 − λ ∥ D 2 f ∥ L s λ. holds true, where the function Φ k, s was defined in Sections 4.2-4.5 4.2-4.5
Similar(51)
where and are defined in Section 3.1.1.
This symptom will be also defined in section 2.
Let E be as defined in Section 2.
Let (zeta_{H,K}) be defined in Section 2.
Therefore, Objective II defined in Section 4 is met.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com