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  2. COST Hata model - Wikipedia

    en.wikipedia.org/wiki/COST_Hata_model

    It is the most often cited of the COST 231 models (EU funded research project ca. April 1986 – April 1996), [1] also called the Hata Model PCS Extension. This model is the combination of empirical and deterministic models for estimating path loss in an urban area over frequency range of 800 MHz to 2000 MHz.

  3. Link budget - Wikipedia

    en.wikipedia.org/wiki/Link_budget

    For example, a "2 by 4" wood stud wall with drywall on both sides results in about 6 dB loss per wall at 2.4 GHz. [2] Older buildings may have even greater internal losses than new buildings due to materials and line of sight issues. Experience has shown that line-of-sight propagation holds only for about the first 3 meters.

  4. Hata model - Wikipedia

    en.wikipedia.org/wiki/Hata_model

    The Hata model is a radio propagation model for predicting the path loss of cellular transmissions in exterior environments, valid for microwave frequencies from 150 to 1500 MHz. It is an empirical formulation based on the data from the Okumura model , and is thus also commonly referred to as the Okumura–Hata model . [ 1 ]

  5. Cost per mille - Wikipedia

    en.wikipedia.org/wiki/Cost_per_mille

    CPP is the cost of an advertising campaign, relative to the rating points delivered. In a manner similar to CPM, cost per point measures the cost per rating point for an advertising campaign by dividing the cost of the advertising by the rating points delivered. [4] The American Marketing Association defines cost-per-rating-point (CPR or CPRP) as:

  6. Point-to-point Lee model - Wikipedia

    en.wikipedia.org/wiki/Point-to-point_Lee_model

    The Lee model for point-to-point mode is a radio propagation model that operates around 900 MHz. Built as two different modes, this model includes an adjustment factor that can be adjusted to make the model more flexible to different regions of propagation.

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  8. Smith chart - Wikipedia

    en.wikipedia.org/wiki/Smith_chart

    For example, the point P1 in the example representing a reflection coefficient of has a normalised impedance of = +. To graphically change this to the equivalent normalised admittance point, say Q1, a line is drawn with a ruler from P1 through the Smith chart centre to Q1, an equal radius in the opposite direction.

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