Question
Download Solution PDFGiven that CNDR of 256 QAM signal operating at 12.5 M Symbols/s is 100 dBHz. The value of Eb/N0 (Energy-per-bit to Noise Density ratio) is:
Answer (Detailed Solution Below)
Detailed Solution
Download Solution PDFExplanation:
Numerical Solution for Eb/N0 Calculation
Given Data:
- CNDR (Carrier-to-Noise Density Ratio): 100 dBHz
- Modulation Scheme: 256-QAM
- Symbol Rate: 12.5 M Symbols/s (or 12.5 × 106 Symbols/s)
Step-by-Step Solution:
To calculate the energy-per-bit to noise density ratio (Eb/N0), we can use the relationship between CNDR, symbol rate, and the modulation scheme. The formula is as follows:
Formula:
Eb/N0 = CNDR - 10 × log10(R × log2(M))
Where:
- CNDR: Carrier-to-Noise Density Ratio (in dBHz)
- R: Symbol rate (in Symbols/s)
- M: Modulation order (number of distinct symbols in the modulation, for 256-QAM, M = 256)
Step 1: Convert CNDR to dB Scale
In this question, CNDR is already provided in dBHz (100 dBHz), so no additional conversion is necessary.
Step 2: Calculate the Logarithmic Term for M
The modulation order (M) for 256-QAM is 256. The logarithmic term log2(M) is calculated as:
log2(256) = log2(28) = 8
Step 3: Calculate the Logarithmic Term for Symbol Rate
The symbol rate (R) is given as 12.5 M Symbols/s, which is equivalent to:
R = 12.5 × 106 Symbols/s
The logarithmic term 10 × log10(R × log2(M)) is calculated as:
10 × log10(12.5 × 106 × 8)
First, calculate the product:
12.5 × 106 × 8 = 100 × 106 = 108
Now, calculate the logarithm:
log10(108) = 8
Finally, multiply by 10:
10 × log10(R × log2(M)) = 10 × 8 = 80 dB
Step 4: Subtract the Logarithmic Term from CNDR
Eb/N0 = CNDR - 10 × log10(R × log2(M))
Substitute the values:
Eb/N0 = 100 dB - 80 dB
Eb/N0 = 20 dB
The value of Eb/N0 is 20 dB.
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