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We provide experimental verification that the predicted scaling effects follow theory; (127 μm)3 neural dust motes immersed in water 3 cm from the interrogator couple with 0.002064% power transfer efficiency and 0.04246 ppm backscatter, resulting in a maximum received power of ∼0.5 μW with ∼1 nW of change in backscatter power with neural activity.
A maximum received power of was observed with a 2.5 dB variation in optical power across the room.
The maximum received power on the effective area of the antenna relates proportionally to the transmitting power of the user equipment.
Thus, if all users were allocated the same number of subcarriers, with a constraint on maximum received power spectral density, there would be situations when the HPA has to operate at a low and suboptimal transmit power level.
The probability that a user associates with the kth-tier small cell using the maximum received power cell association policy is: {p_{k}} = frac{{{lambda_{k}}p_{ak}(p_{s})}}{{sumlimits_{i = 1}^{K} {p_{ai}(p_{s}){lambda_{i}}{{left({{P_{i}}/{P_{k}}} right)}^{2/alpha }}} }}, (5).
where d r,s) is the Euclidean distance among the constellation points r and s in the set of C M, N, i.e., d r,s)=∥r−s∥, p and θ are sets of the received power levels and carrier phase offsets, respectively, N is the number of transmitters that transmitted a signal, and p i max is the maximum received power level.
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Subsequently, the user reports the presence of the small cell to the macrocell, and the user might be handed over to the small cell according to cell association policies (e.g., maximum received power-based cell association [15]).
Under the maximum received power-based cell association scheme where a user is associated with a BS if the received power from the BS is higher than any others, a typical user is associated with the kth tier when P rk >P ri for all i∈{1,2,⋯,K},i≠k.
The results are normalized by the maximum of the received power along the tunnel.
The ratio of the maximum to minimum received power is termed as degree of uniformity and is used as a measure of the amount of power variations on the floor.
The degree of uniformity needed to measure of the amount of variation in the power on the receiving surface has previously been defined as the ratio of the maximum to minimum received power levels in an indoor optical wireless communication system [15].
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