2005GLOBECOM '05. IEEE Global Telecommunications Conference, 2005.Requires access

An analytical solution for the BER of an individually optimal single cochannel interferer BPSK receiver

Amir Masoud Rabiei, Norman C. Beaulieu

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Abstract

The exact bit error rate (BER) of a synchronous individually optimal receiver (IOR) used to detect a binary phase-shift keying (BPSK) signal distorted by a like-modulated signal and additive white Gaussian noise (AWGN) is derived. It is shown that the BER expression decomposes into the probability of error of BPSK in AWGN plus an interference term. It is observed that as the noise decreases the IOR performance approaches the performance of a single cochannel interferer jointly optimal receiver.

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The exact bit error rate (BER) of a synchronous individually optimal receiver (IOR) used to detect a binary phase-shift keying (BPSK) signal distorted by a like-modulated signal and additive white Gaussian noise (AWGN) is derived. It is shown that the BER expression decomposes into the probability of error of BPSK in AWGN plus an interference term. It is observed that as the noise decreases the IOR performance approaches the performance of a single cochannel interferer jointly optimal receiver.

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Available abstract

The exact bit error rate (BER) of a synchronous individually optimal receiver (IOR) used to detect a binary phase-shift keying (BPSK) signal distorted by a like-modulated signal and additive white Gaussian noise (AWGN) is derived. It is shown that the BER expression decomposes into the probability of error of BPSK in AWGN plus an interference term. It is observed that as the noise decreases the IOR performance approaches the performance of a single cochannel interferer jointly optimal receiver.

Key concepts: Phase-shift keying, Additive white Gaussian noise, Bit error rate, Interference (communication), Keying, Algorithm, Computer science, Binary number

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