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The following table lists the assignment operators supported by the C language −
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Operator | Description | Example |
---|---|---|
= | Simple assignment operator. Assigns values from right side operands to left side operand | C = A + B will assign the value of A + B to C |
+= | Add AND assignment operator. It adds the right operand to the left operand and assign the result to the left operand. | C += A is equivalent to C = C + A |
-= | Subtract AND assignment operator. It subtracts the right operand from the left operand and assigns the result to the left operand. | C -= A is equivalent to C = C - A |
*= | Multiply AND assignment operator. It multiplies the right operand with the left operand and assigns the result to the left operand. | C *= A is equivalent to C = C * A |
/= | Divide AND assignment operator. It divides the left operand with the right operand and assigns the result to the left operand. | C /= A is equivalent to C = C / A |
%= | Modulus AND assignment operator. It takes modulus using two operands and assigns the result to the left operand. | C %= A is equivalent to C = C % A |
<<= | Left shift AND assignment operator. | C <<= 2 is same as C = C << 2 |
>>= | Right shift AND assignment operator. | C >>= 2 is same as C = C >> 2 |
&= | Bitwise AND assignment operator. | C &= 2 is same as C = C & 2 |
^= | Bitwise exclusive OR and assignment operator. | C ^= 2 is same as C = C ^ 2 |
|= | Bitwise inclusive OR and assignment operator. | C |= 2 is same as C = C | 2 |
Example
Try the following example to understand all the assignment operators available in C −
When you compile and execute the above program, it produces the following result −
![C to f C to f](/uploads/1/3/4/3/134317152/452438826.png)
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c_operators.htm
In telecommunications, the carrier-to-noise ratio, often written CNR or C/N, is the signal-to-noise ratio (SNR) of a modulated signal. The term is used to distinguish the CNR of the radio frequency passband signal from the SNR of an analog base band message signal after demodulation, for example an audio frequency analog message signal. If this distinction is not necessary, the term SNR is often used instead of CNR, with the same definition.
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Digitally modulated signals (e.g. QAM or PSK) are basically made of two CW carriers (the I and Q components, which are out-of-phase carriers). In fact, the information (bits or symbols) is carried by given combinations of phase and/or amplitude of the I and Q components. It is for this reason that, in the context of digital modulations, digitally modulated signals are usually referred to as carriers. Therefore, the term carrier-to-noise-ratio (CNR), instead of signal-to-noise-ratio (SNR) is preferred to express the signal quality when the signal has been digitally modulated.
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High C/N ratios provide good quality of reception, for example low bit error rate (BER) of a digital message signal, or high SNR of an analog message signal.
Definition[edit]
The carrier-to-noise ratio is defined as the ratio of the received modulated carrier signal powerC to the received noise power N after the receiver filters:
- .
Can i download and install ableton live on multiple computers. When both carrier and noise are measured across the same impedance, this ratio can equivalently be given as:
- ,
where and are the root mean square (RMS) voltage levels of the carrier signal and noise respectively.
C/N ratios are often specified in decibels (dB): Final cut express 4 dmg.
or in term of voltage:
CNR measurements and estimation[edit]
The C/N ratio is measured in a manner similar to the way the signal-to-noise ratio (S/N) is measured, and both specifications give an indication of the quality of a communications channel.
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In the famous Shannon–Hartley theorem, the C/N ratio is equivalent to the S/N ratio. The C/N ratio resembles the carrier-to-interference ratio (C/I, CIR), and the carrier-to-noise-and-interference ratio, C/(N+I) or CNIR.
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C/N estimators are needed to optimize the receiver performance.[1] Typically, it is easier to measure the total power than the ratio of signal power to noise power (or noise power spectral density), and that is why CNR estimation techniques are timely and important.
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See also[edit]
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- Carrier-to-receiver noise densityC/N0
- Eb/N0 (energy per bit relative to noise power spectral density)
- Es/N0 (energy per symbol relative to noise power spectral density)
- Signal-to-interference ratio (SIR or S/I)
- Signal-to-noise ratio (SNR or S/N)
- SINAD (ratio of signal-plus-noise-plus-distortion to noise-plus-distortion)
References[edit]
- ^Islam, A. K. M. Najmul; Lohan, E. S.; Renfors, M. (Mar 2008). Moment based CNR estimators for BOC/BPSK modulated signal for Galileo/GPS. pp. 129–136.
External links[edit]
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- Digital Transmission: Carrier-to-Noise Ratio, Signal-to-Noise Ratio, and Modulation Error Ratio at the Wayback Machine (archived 2016-03-04)
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