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The process is modeled and the maximum likelihood estimator of the change point is derived in "Process modeling and MLE derivation" section.
In the 'Multivariate binomial process modeling and MLE derivation' section, the model of the process behavior is described and the MLEs of a step-change and a linear-trend disturbance are derived.
(further information and derivations can be found in the "Model Derivation" section of Additional file 1).
This will need to be clearly explained in the guideline derivation section" of the WHO Policies and Procedures Manual [ 3].
Similar(56)
The dynamics described by (6-11) analogousgous to the reactions in (5), as shown in the "Model derivations" section of Additional file 1.
Using the derivations in the ' Distributional derivations' section, a random realization (t i ) of (T i ) can be generated as follows Specify the hazard λ (t ) as a function of total time.
The link probability of success can simply be derived using the derivation in Section 3-A, setting Nout = Nclose and Nfar = 0 (this does not mean that there are not far interferers, but that their propagation model is simply the same of close interferers).
We first describe the generalized waveforms for multi-carrier (GWMC) system considered in our derivations in Section 2 and derive its PAPR distribution in Section 3. In Section 4, some applications of the PAPR approximation are explained.
The derivation in Section 4 was motivated by NLS.
Following the derivation in Section 4.2, inserting (31) gives (35).
The solution can be obtained similarly to the derivation in Section 3.3.
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