Constraints for the physical layer and RF equipment » History » Version 5
GAY, Adrien, 03/24/2015 01:01 AM
1 | 1 | AUGER, Anne sophie | h1. Constraints for the physical layer and RF equipment |
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2 | 1 | AUGER, Anne sophie | |
3 | 5 | GAY, Adrien | From the given allocated frequency band, the following parameters are defined: |
4 | 5 | GAY, Adrien | * f : Central frequency of the emitted signal |
5 | 5 | GAY, Adrien | * B: Width of the allocated bandwidth |
6 | 5 | GAY, Adrien | * EIRP: Maximum power that can be emitted in a given direction |
7 | 1 | AUGER, Anne sophie | |
8 | 5 | GAY, Adrien | From the specifications, the following parameters are defined: |
9 | 5 | GAY, Adrien | * Rb: Useful bit rate of the transmission |
10 | 5 | GAY, Adrien | * R : Minimal distance for the transmission |
11 | 1 | AUGER, Anne sophie | |
12 | 5 | GAY, Adrien | The value of these parameters constrain the parameters of the physical layer and the RF equipment for the design of the system. |
13 | 1 | AUGER, Anne sophie | |
14 | 1 | AUGER, Anne sophie | |
15 | 5 | GAY, Adrien | h2. Required bit rate |
16 | 5 | GAY, Adrien | |
17 | 5 | GAY, Adrien | |
18 | 2 | AUGER, Anne sophie | In order to define the bit rate required for the transmission of video streams we need some input parameters, provided in the mission statement: |
19 | 2 | AUGER, Anne sophie | |
20 | 2 | AUGER, Anne sophie | > # aspect ratio of the video : AR=1,78 |
21 | 2 | AUGER, Anne sophie | > # quality of the encoded video L=720p |
22 | 2 | AUGER, Anne sophie | > # frame cadence FPS=12 fps |
23 | 2 | AUGER, Anne sophie | |
24 | 2 | AUGER, Anne sophie | We used the following formula |
25 | 2 | AUGER, Anne sophie | |
26 | 1 | AUGER, Anne sophie | p=. Bit rate = FPS*5,0692 * L ^1,391^ /(1000*AR) |
27 | 1 | AUGER, Anne sophie | |
28 | 1 | AUGER, Anne sophie | So |
29 | 1 | AUGER, Anne sophie | |
30 | 1 | AUGER, Anne sophie | p=. *Bit rate=322 Kbps* |
31 | 1 | AUGER, Anne sophie | |
32 | 1 | AUGER, Anne sophie | |
33 | 5 | GAY, Adrien | However, we will use an adaptated encapsulation protocol to support the video transmission. Then, we have to take into account headers bits, and we decided to round the bit rate up to 500 kbps. |
34 | 1 | AUGER, Anne sophie | |
35 | 1 | AUGER, Anne sophie | |
36 | 1 | AUGER, Anne sophie | |
37 | 5 | GAY, Adrien | h2. Physical layer: |
38 | 1 | AUGER, Anne sophie | |
39 | 1 | AUGER, Anne sophie | The study of the physical layer will be limited to the choice of the modulation, the coding and the shaping filter. We will consider a SRRC filter (Square Root Raised Cosine) for the shaping filter as it is commonly used in telecommunication systems for its good performances. |
40 | 1 | AUGER, Anne sophie | |
41 | 1 | AUGER, Anne sophie | Then, the parameters of the physical layer are: |
42 | 1 | AUGER, Anne sophie | * M : Modulation (M=4 : QPSK, M=8 : 8PSK etc) |
43 | 1 | AUGER, Anne sophie | * rho : Coding rate (rho <1) |
44 | 1 | AUGER, Anne sophie | * alpha : roll-off of the SRRC filter |
45 | 1 | AUGER, Anne sophie | |
46 | 1 | AUGER, Anne sophie | In fact all these parameters are linked through the spectral efficiency T of the system, which is fixed by B and Rb: |
47 | 1 | AUGER, Anne sophie | |
48 | 3 | GAY, Adrien | p=. $\tau = \frac{R_{b}}{B}$ and $\tau =\frac{\log_{2}(M)\rho}{1+\alpha}$ |
49 | 1 | AUGER, Anne sophie | |
50 | 1 | AUGER, Anne sophie | Then, the parameters of the physical have to comply with the following relation: |
51 | 1 | AUGER, Anne sophie | |
52 | 4 | GAY, Adrien | p=. $\frac{\log_{2}(M)\rho}{1+\alpha}>\frac{R_{b}}{B}$ |
53 | 1 | AUGER, Anne sophie | |
54 | 1 | AUGER, Anne sophie | |
55 | 1 | AUGER, Anne sophie | |
56 | 5 | GAY, Adrien | h2. Link budget: |
57 | 1 | AUGER, Anne sophie | |
58 | 1 | AUGER, Anne sophie | Here is the expression of the link budget: |
59 | 1 | AUGER, Anne sophie | |
60 | 1 | AUGER, Anne sophie | (link budget) |
61 | 1 | AUGER, Anne sophie | |
62 | 1 | AUGER, Anne sophie | We can notice that all the parameters are already known, except: |
63 | 1 | AUGER, Anne sophie | * (G/T): Figure of merit of the receiver (ISAE antenna) |
64 | 1 | AUGER, Anne sophie | * Lmarg: Margin on the link budget to take into account all the perturbations (antenna |
65 | 1 | AUGER, Anne sophie | depointing, atmosphere attenuation, interferences, non-ideal demodulator …) |
66 | 1 | AUGER, Anne sophie | |
67 | 1 | AUGER, Anne sophie | Lmarg being only linked to physical parameters, we don’t have any influence on it. Then, it has to be evaluated but it is not really a parameter of the design. |
68 | 1 | AUGER, Anne sophie | |
69 | 1 | AUGER, Anne sophie | Power amplifier |