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Thus, bits are represented in data stream 1 by and and in data stream 2 by and , each of which are modulated by 900 MHz carrier. The transmitter sends the two data streams sothat their bit intervals align. Each receiver uses a matched filter for its receiver. The requirement isthat each receiver not receive the other's bit stream.
A signal is transmitted using amplitude modulation in the usual way. The signal has bandwidth Hz, and the carrier frequency is . In addition to sending this analog signal, the transmitter also wants to send ASCII text in an auxiliary band that lies slightly above the analog transmission band. Using an 8-bit representationof the characters and a simple baseband BPSK signal set (the constant signal +1 corresponds to a 0, the constant-1 to a 1), the data signal representing the text is transmitted as the same time as the analog signal . The transmission signal spectrum is as shown , and has a total bandwidth .
Just as with analog communication, it should be possible to send two signals simultaneously over a digitalchannel. Assume you have two CD-quality signals (each sampled at 44.1 kHz with 16 bits/sample). Onesuggested transmission scheme is to use a quadrature BPSK scheme. If and each represent a bit stream, the transmitted signal has the form where is a unit-amplitude pulse having duration and , equal either +1 or -1 according to the bit being transmitted for each signal. The channel adds whitenoise and attenuates the transmitted signal.
Suppose we transmit speech signals over comparable digital and analog channels. We want to compare theresulting quality of the received signals. Assume the transmitters use the same power, and the channelsintroduce the same attenuation and additive white noise. Assume the speech signal has a 4 kHz bandwidth and, inthe digital case, is sampled at an 8 kHz rate with eight-bit A/D conversion. Assume simple binary sourcecoding and a modulated BPSK transmission scheme.
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