2002Unpublished venueRequires access

A quadrature sampling scheme with improved image rejection for complex-IF receivers

Kong‐Pang Pun, J.E. Franca, Carlos Azeredo-Leme

Open publisher page 14 citations

Abstract

In complex-IF receivers, I/Q imbalances will limit their image rejection performance. In this paper, a quadrature sampling scheme combining the function of IF-to-baseband conversion is proposed to transform the image problem caused by I/Q imbalances in this stage to the less important self-image problem. With this scheme, signal is sampled at the IF stage but digitized at baseband. DC and other low-frequency noises are circumvented while baseband /spl Delta//spl Sigma/ modulators can be used. Circuit simulations show that the proposed method removes completely the image interference due to I/Q imbalances that exist after the IF input.

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What this paper is about

In complex-IF receivers, I/Q imbalances will limit their image rejection performance. In this paper, a quadrature sampling scheme combining the function of IF-to-baseband conversion is proposed to transform the image problem caused by I/Q imbalances in this stage to the less important self-image problem. With this scheme, signal is sampled at the IF stage but digitized at baseband. DC and other low-frequency noises are circumvented while baseband /spl Delta//spl Sigma/ modulators can be used. Circuit simulations show that the proposed method removes completely the image interference due to I/Q imbalances that exist after the IF input.

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OpenAlex reports 14 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

In complex-IF receivers, I/Q imbalances will limit their image rejection performance. In this paper, a quadrature sampling scheme combining the function of IF-to-baseband conversion is proposed to transform the image problem caused by I/Q imbalances in this stage to the less important self-image problem. With this scheme, signal is sampled at the IF stage but digitized at baseband. DC and other low-frequency noises are circumvented while baseband /spl Delta//spl Sigma/ modulators can be used. Circuit simulations show that the proposed method removes completely the image interference due to I/Q imbalances that exist after the IF input.

Key concepts: Baseband, Image response, Sampling (signal processing), Quadrature (astronomy), Image (mathematics), Computer science, Limit (mathematics), Algorithm

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