Advanced Trends in Wireless Communications Part 2 potx
... obtained, as: K asym (u, v)= 2 d 2 Cuv π(u 2 + v 2 ) d+1 1 0 (1 − x) d−1 /2 1 − u 2 u 2 + v 2 x −d−1 dx = 2 d−1 Cuv π(u 2 + v 2 ) d+1 (2d + 1) 2 F 1 1, d + 1; d + 3 2 ; u 2 u 2 + v 2 (26 ) Fig. ... Trends in Wireless Communications Advanced Trends in Wireless Communications 26 ─ Attenuation 5 dB threshold + Shadowing begi...
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... s) 2. 21 2. 11 2. 19 2. 08 2. 21 2. 11 2. 17 2. 21 NPP (dB) 0 2. 01 1.37 4. 02 0 2. 79 1.667 5.16 FG (dB) 26 .05 24 . 62 27. 32 27.41 28 . 02 27.47 30.46 30.67 SSR (dB) 4.51 4 .29 4.93 4.68 4 .22 4. 32 4.43 4 .24 IAP ... reduced by [H. Jafarkhani (p.57)] to, 2 1 2 2 2 1 2 12 * 2 * 11 )1( sshrhr −++−+ αα , (2- 21) And, .)1( 2 2 2 2 2 1 2 21 * 2 *...
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... dB S 12= 0 S 22= dbpolar( -25 ,180) S11=dbpolar(- 12, 0) S21=dbpolar ( 12, 0) Amplifier2 LNA1 GainCompPower=0 NF=4.4 dB S 12= 0 S 22= polar(-19,180) S11=dbpolar(-18,0) S21=dbpolar (13,0) BPF _Chebyshev BPF1 IL=5 dB Astop =20 dB BWstop=1 .2 GH z Ri ... the increase of this distance raises the FSPL. Trends and Challenges in CMOS Design for Emerging 60 GHz WPAN Applications 511 Amplifie...
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Advanced Trends in Wireless Communications Part 1 pptx
... ABEP BPSK 1 π π /2 0 M γ 1 sin 2 θ dθ BFSK 1 π π /2 0 M γ 1 2sin 2 θ dθ BFSK with minimum correlation 1 π π /2 0 M γ 0.715 sin 2 θ dθ M-AM 2( M−1) Mπ log 2 (M) π /2 0 M γ g AM sin 2 θ dθ, ... as f γ (γ)= 2 √ πμ μ+ 1 2 h μ Γ(μ)H μ− 1 2 γ μ− 1 2 γ μ+ 1 2 exp − 2 γh γ I μ− 1 2 2 Hγ γ . (26 ) In Format 1, h = (2 + η −1 + η)/4 and H =...
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Advanced Trends in Wireless Communications Part 3 pdf
... ISBN 0-486-6 127 2-4. Adinoyi, A. & A l-Semari, S. (20 02) . Expression for evaluating performance of BPSK with MRC in Nakagami fading, IEE Electronics Letters 38 (23 ): 1 428 –1 429 . Alouini, M S., ... shift keying (BPSK) and 1 /2 for binary frequency shift keying (BFSK). Also, b = 1 for non-coherent BFSK and binary differential PSK (BDPSK) and 1 /2 for coherent 60 Advanced Trend...
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Advanced Trends in Wireless Communications Part 4 pdf
... y S 2 D , y R 1 D ,andy R 2 D introduced in Section 2, the proposed receiver estimates the distributed codeword that has most probably 124 Advanced Trends in Wireless Communications Advanced Trends ... 20 06)) to avoid mutual interference: S 1 transmits in time-slot 1 (solid lines), S 2 in time-slot 2 (dashed lines), R 1 in time-slot 3 (dotted lines), and R 2...
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Advanced Trends in Wireless Communications Part 5 docx
... time-slots 134 Advanced Trends in Wireless Communications Diversity and Decoding in Non-Ideal Conditions 145 () () () () () () () () () () 11 1 11 122 LL 22 2 21 122 LL L1 L1 L1 L1 1 1 2 2 L L L 12 L zrr ... ABEP ( S 2 ) =(1 /2) ¯ P 1 +(1 /2) ¯ P 3 +(1 /2) ¯ P 1 ¯ P 2 +(1 /2) ¯ P 1 ¯ P 3 + ( 1 /2) ¯ P 1 ¯ P 4 +(1 /2) ¯ P 2 ¯ P 3 +(1 /2) ¯ P 3 ¯ P 4 − (1 /2...
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Advanced Trends in Wireless Communications Part 6 ppt
... shares is T 22 2 η ησ ησ == (38) S S’ T 22 22 η ση = Rx coder X Channel 2 σ X 1 Tx coder 22 σ 2 σ Advanced Trends in Wireless Communications 176 0 2 4 6 8 10 12 14 16 10 -10 10 -8 10 -6 10 -4 10 -2 10 0 Signal ... 1 .27 3.73 6.05 2. 46 -7. 82 0.75 1.08 1.74 2. 03 1. 42 -3.07 1.47 2. 70 5. 82 2.41 -7.65 0.80 1.17 1.50 2. 06 1.44 -3...
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Advanced Trends in Wireless Communications Part 8 ppt
... would be decreased if this information could be accounted for in the prediction. 26 0 Advanced Trends in Wireless Communications explained in Section 4.5 .2. If the information is available, we ... Zhang, J. (20 06). Time reversal with MISO for ultrawideband communications: Experimental results, IEEE Antennas and Wireless Propagation Letters 5(1): 26 9 27 3. 24 0 Advanced...
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Advanced Trends in Wireless Communications Part 9 ppt
... () () cd t kk k cede 22 22 22 22 22 2 μμ σσ σσ σ σσ μ μ ππ π −− −− ⎡ ⎤ ⎛⎞⎛⎞ ⎢ ⎥ =+ −+ −−+ ⎜⎟⎜⎟ ⎢ ⎥ ⎝⎠⎝⎠ ⎣ ⎦ (4b) 4 .2 Connectivity delay analysis in the SIC network In this section analytical ... D. (20 00), The Infostations Challenge: Balancing Cost and Ubiquity in Delivering Wireless Data, IEEE Per. Commun., vol. 7, no. 2, pp. 66-71, April 20 00. Advanced Trends...
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