2006Unpublished venueRequires access

Performance of an Adaptive Blind Equalizer for QAM Signals

Antoinette Beasley, Arlene Cole-Rhodes

Open publisher page 14 citations

Abstract

This paper presents a performance study of a blind adaptive channel equalization scheme. This scheme is based on a single cost function, which is created by combining two well-defined cost functions, the constant modulus algorithm (CMA) and the alphabet-matched algorithm (AMA). The combined cost function considers both the amplitude and the phase of the equalizer output, which allows for more efficient equalization of QAM signals. We present results that compare equalization of a 16-QAM signal using the new cost function with that obtained using the CMA cost function alone. The performance measures used for the comparison are the average mean-squared error (MSE) and the average symbol error rate (SER)

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What this paper is about

This paper presents a performance study of a blind adaptive channel equalization scheme. This scheme is based on a single cost function, which is created by combining two well-defined cost functions, the constant modulus algorithm (CMA) and the alphabet-matched algorithm (AMA). The combined cost function considers both the amplitude and the phase of the equalizer output, which allows for more efficient equalization of QAM signals. We present results that compare equalization of a 16-QAM signal using the new cost function with that obtained using the CMA cost function alone. The performance measures used for the comparison are the average mean-squared error (MSE) and the average symbol error rate (SER)

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Available abstract

This paper presents a performance study of a blind adaptive channel equalization scheme. This scheme is based on a single cost function, which is created by combining two well-defined cost functions, the constant modulus algorithm (CMA) and the alphabet-matched algorithm (AMA). The combined cost function considers both the amplitude and the phase of the equalizer output, which allows for more efficient equalization of QAM signals. We present results that compare equalization of a 16-QAM signal using the new cost function with that obtained using the CMA cost function alone. The performance measures used for the comparison are the average mean-squared error (MSE) and the average symbol error rate (SER)

Key concepts: Blind equalization, QAM, Quadrature amplitude modulation, Adaptive equalizer, Bit error rate, Equalization (audio), Computer science, Mean squared error

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