Dual-Diode Unified SWIPT for High Data Rates with Adaptive Detection

Fuente: arXiv
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Main Authors: Ashraf, Zulqarnain Bin, Mavrovoltsos, Triantafyllos, Psomas, Constantinos, Krikidis, Ioannis, Smida, Besma
Format: Preprint
Published: 2026
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author Ashraf, Zulqarnain Bin
Mavrovoltsos, Triantafyllos
Psomas, Constantinos
Krikidis, Ioannis
Smida, Besma
author_facet Ashraf, Zulqarnain Bin
Mavrovoltsos, Triantafyllos
Psomas, Constantinos
Krikidis, Ioannis
Smida, Besma
contents Due to their low-complexity and energy-efficiency, unified simultaneous wireless information and power transfer (U-SWIPT) receivers are especially suitable for low-power Internet of Things (IoT) applications. Towards accurately modeling practical operating conditions, in this study, we provide a unified transient framework for a dual-diode U-SWIPT that jointly accounts for diode nonlinearity and capacitor-induced memory effects. The proposed model accurately describes the inherent time dependence of the rectifier, highlighting its fundamental impact on both energy harvesting (EH) and information decoding (ID) processes. Based on the provided memory-aware model, we design a low-complexity adaptive detector that learns the nonlinear state transition dynamics and performs decision-directed detection with linear complexity. The proposed detection scheme approaches maximum likelihood sequence detection (MLSD) performance in memory-dominated regimes, while avoiding the exponential search required by classical sequence detection. Overall, these results demonstrate that properly exploiting rectifier memory provides a better tradeoff between data rate and reliability for U-SWIPT receivers.
format Preprint
id arxiv_https___arxiv_org_abs_2601_22270
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Dual-Diode Unified SWIPT for High Data Rates with Adaptive Detection
Ashraf, Zulqarnain Bin
Mavrovoltsos, Triantafyllos
Psomas, Constantinos
Krikidis, Ioannis
Smida, Besma
Signal Processing
Due to their low-complexity and energy-efficiency, unified simultaneous wireless information and power transfer (U-SWIPT) receivers are especially suitable for low-power Internet of Things (IoT) applications. Towards accurately modeling practical operating conditions, in this study, we provide a unified transient framework for a dual-diode U-SWIPT that jointly accounts for diode nonlinearity and capacitor-induced memory effects. The proposed model accurately describes the inherent time dependence of the rectifier, highlighting its fundamental impact on both energy harvesting (EH) and information decoding (ID) processes. Based on the provided memory-aware model, we design a low-complexity adaptive detector that learns the nonlinear state transition dynamics and performs decision-directed detection with linear complexity. The proposed detection scheme approaches maximum likelihood sequence detection (MLSD) performance in memory-dominated regimes, while avoiding the exponential search required by classical sequence detection. Overall, these results demonstrate that properly exploiting rectifier memory provides a better tradeoff between data rate and reliability for U-SWIPT receivers.
title Dual-Diode Unified SWIPT for High Data Rates with Adaptive Detection
topic Signal Processing
url https://arxiv.org/abs/2601.22270