For single sideband (SSB) modulation a) Write the time domain equation XSSB(t). b) Explain the generation process of single sideband (SSB) signal using phase shift method. c) Sketch the block diagram of single sideband (SSB) signal generation using phase shift method and using bandpass filter and its main disadvantages. d) Explain with drawing the demodulation process of SSB signal. e) How many single sideband (SSB) stations can be accommodated in a 180 KHz bandwidth if the highest modulating signal frequency fmax is 9 KHz? f) What are the main advantages and disadvantages of single sideband (SSB) modulation compared with ordinary amplitude modulation (AM).
Quantization and Resolution
Quantization is a methodology of carrying out signal modulation by the process of mapping input values from an infinitely long set of continuous values to a smaller set of finite values. Quantization forms the basic algorithm for lossy compression algorithms and represents a given analog signal into digital signals. In other words, these algorithms form the base of an analog-to-digital converter. Devices that process the algorithm of quantization are known as a quantizer. These devices aid in rounding off (approximation) the errors of an input function called the quantized value.
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For single sideband (SSB) modulation
a) Write the time domain equation XSSB(t).
b) Explain the generation process of single sideband (SSB) signal using phase
shift method.
c) Sketch the block diagram of single sideband (SSB) signal generation using
phase shift method and using bandpass filter and its main disadvantages.
d) Explain with drawing the demodulation process of SSB signal.
e) How many single sideband (SSB) stations can be accommodated in a 180
KHz bandwidth if the highest modulating signal frequency fmax is 9 KHz?
f) What are the main advantages and disadvantages of single sideband (SSB)
modulation compared with ordinary amplitude modulation (AM).
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