EDBT 2026 Demo / reviewers in the wild / expert
Andrea Neviani
dblp:39/5005
· DBLP profile ↗
18ranked-venue papers
0as first author
0since 2021 · last 2011
0000-0002-7839-9192ORCID · verified
Domains — the database's venue-derived domains; a paper can count in several
Systems, architecture and hardware · 12Computer networks · 5Applied, interdisciplinary, general and emerging computing · 2
Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.
| Computer architecture, parallel and distributed computing, and storage systems
2 papers |
Integrated circuit design · 50% Electronic design automation · 50% | |
| Theoretical computer science
2 papers |
Coding theory · 100% |
Topics — the 6 heaviest of 6, each with the papers that count most for it
| Topic | Weight | Papers | Last | Evidence papers |
|---|---|---|---|---|
Integrated circuit design
analog and mixed-signal circuits |
0.1 | 2 | 2006 | Design, Simulation, and Testing of a CMOS Analog Decoder for the Block Length-40 UMTS Turbo Code · IEEE Trans. Commun. 2006 Design, Simulation, and Testing of a CMOS Analog Decoder for the Block Length-40 UMTS Turbo Code · IEEE Trans. Commun. 2006 |
Integrated circuit design › analog and mixed-signal circuits › analog signal processing
analog decoder |
0.1 | 2 | 2006 | Design, Simulation, and Testing of a CMOS Analog Decoder for the Block Length-40 UMTS Turbo Code · IEEE Trans. Commun. 2006 Design, Simulation, and Testing of a CMOS Analog Decoder for the Block Length-40 UMTS Turbo Code · IEEE Trans. Commun. 2006 |
Electronic design automation
circuit simulation |
0.1 | 2 | 2006 | Design, Simulation, and Testing of a CMOS Analog Decoder for the Block Length-40 UMTS Turbo Code · IEEE Trans. Commun. 2006 Design, Simulation, and Testing of a CMOS Analog Decoder for the Block Length-40 UMTS Turbo Code · IEEE Trans. Commun. 2006 |
Electronic design automation
hardware verification and test |
0.1 | 2 | 2006 | Design, Simulation, and Testing of a CMOS Analog Decoder for the Block Length-40 UMTS Turbo Code · IEEE Trans. Commun. 2006 Design, Simulation, and Testing of a CMOS Analog Decoder for the Block Length-40 UMTS Turbo Code · IEEE Trans. Commun. 2006 |
Coding theory › channel coding
turbo codes |
0.1 | 2 | 2006 | Design, Simulation, and Testing of a CMOS Analog Decoder for the Block Length-40 UMTS Turbo Code · IEEE Trans. Commun. 2006 Design, Simulation, and Testing of a CMOS Analog Decoder for the Block Length-40 UMTS Turbo Code · IEEE Trans. Commun. 2006 |
Coding theory › error-correcting codes › decoding › iterative decoding › soft-input soft-output decoding
turbo decoding |
0.1 | 2 | 2006 | Design, Simulation, and Testing of a CMOS Analog Decoder for the Block Length-40 UMTS Turbo Code · IEEE Trans. Commun. 2006 Design, Simulation, and Testing of a CMOS Analog Decoder for the Block Length-40 UMTS Turbo Code · IEEE Trans. Commun. 2006 |
Methods — techniques the papers use, named apart from their topics
discrete-time modeling · 0.2
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2011 | Integrated transceivers for UWB breast cancer imaging: Architecture and circuit constraintsabstractWe present a behavioral analysis of two different transceiver architectures for UWB breast cancer imaging employing a SFCW radar system. A mathematical model of the direct conversion and super heterodyne architectures together with a numerical breast phantom are developed. FDTD simulations data are used on the behavioral model to investigate the limits of both architectures from a circuit-level point of view. The result is that the simplicity of the direct conversion makes the receiver more robust toward the critical circuit impairments for this application, that is the random phase mismatches between the TX and RX local oscillators. Matteo Bassi, Andrea Bevilacqua, Andrea Gerosa, Andrea Neviani |
ISCAS | 4 |
| 2010 | Accurate time-variant analysis of a current-reuse 2.2 GHz 1.3 mW CMOS front-endabstractThis paper presents a 2.2 GHz receiver front-end capable of an extreme current reuse, where the low-noise amplifier, the quadrature mixers and VCOs only draw 1.3 mA from a 1V supply. A careful time-variant analysis is carried out, resulting in a very accurate expression of the conversion gain and bandwidth of the downconverter. A prototype, implemented in a 90 nm CMOS technology, shows 27 dB gain over a 14 MHz bandwidth, with a noise figure of 13 dB. The input-referred 1 dB compression point is -23.7 dBm. Matteo Camponeschi, Andrea Bevilacqua, Andrea Neviani, Pietro Andreani |
ISCAS | 3 |
| 2010 | A digitally programmable ring oscillator in the UWB rangeabstractThe increasing interest in impulse radio UWB communication links focuses the research interest on building blocks optimized for these specific systems. In this context, this paper proposes a ring oscillator for an impulse radio UWB transmitter. A multiloop ring oscillator is considered because it holds the potential of both high oscillation frequency and fast switch-on time. The novelty of the proposed inverter cell is found in the possibility to adjust the oscillation frequency digitally, rather than with an analog voltage. This leads to larger tuning range and less sensitivity to control noise. The digitally controlled oscillator is designed in 0.13μm CMOS technology and according to simulations the tuning range is from 4 GHz to 12.5 GHz. The power consumption is below 8 mW. Andrea Gerosa, Silvia Soldà, Andrea Bevilacqua, Daniele Vogrig, Andrea Neviani |
ISCAS | 5 |
| 2010 | Low-power UWB transmitter using a combined mixer and power amplifierabstractThis paper presents an energy-efficient transmitter for UWB impulse-radio. The proposed circuit uses a novel combined mixer and power amplifier to generate a Gaussian pulse with 1.25GHz bandwidth and center frequency of 7.87GHz. The combined MXR-PA includes a monolithic transformer to reach a maximum output voltage swing of 3.2Vpp. The transformer has been designed so as to maximize the transmitter power efficiency and at the same time to realize a fourth-order ladder filter, in order to reduce out-of band emissions. The transmitter has been implemented in a 0.13μm CMOS technology, occupies an area of 0.14mm2and dissipates 1.92mW for a 10-pulse burst with 1.2V power supply. Silvia Soldà, Michele Caruso, Daniele Vogrig, Andrea Bevilacqua, Andrea Gerosa, Andrea Neviani |
ISCAS | 6 |
| 2010 | A thorough analysis of the tank quality factor in LC oscillators with switched capacitor banksabstractA thorough analysis of the tank quality factor in LC oscillators using switched capacitor banks has been carry out taking into account the contribution of the switched capacitances in the off state. Analysis results, confirmed by circuit level simulations, clearly show that the contribution of the switched capacitances in off state strongly affects the quality factor of the capacitor bank, and thus of the tank, increasing it. General expressions of the quality factor of useful one-port reactive networks are also presented. Stefano Dal Toso, Andrea Bevilacqua, Andrea Gerosa, Andrea Neviani |
ISCAS | 4 |
| 2008 | Design of broadband inductorless LNAs in ultra-scaled CMOS technologiesabstractShunt-shunt resistive feedback is used in this paper to design inductorless broadband LNAs in a digital 45 nm CMOS technology. Simulation results show 18 dB gain over a 10 GHz bandwidth, with NF-7 dBm in-band, while consuming 32 mW from a 1 V supply voltage. Andrea Bevilacqua, Matteo Camponeschi, Marc Tiebout, Andrea Gerosa, Andrea Neviani |
ISCAS | 5 |
| 2008 | An energy-detector for non-coherent impulse-radio UWB receiversabstractAn energy detector designed in a 0.18μm CMOS technology and intended for a non-coherent impulse-radio UWB receiver is presented in this paper. The proposed circuit exploits the quadratic current characteristic of saturated MOS transistors to square input pulses that cover the whole UWB bandwidth. The integral is computed with a Gm-C architecture connected to the squarer using a flipped voltage follower current sensor. A behavioural model of the receiver is developed in order to put the proposed circuit in the perspective of the complete system and to translate the transistor-level figures of merit in communication system parameters. The energy detector dissipates 5.4mW with a 1.8V power supply and a sensitivity of −88dBm is expected at the antenna Andrea Gerosa, Maurizio Dalla Costa, Andrea Bevilacqua, Daniele Vogrig, Andrea Neviani |
ISCAS | 5 |
| 2008 | Analog decoding of trellis coded modulation for multi-level flash memoriesabstractTrellis coded modulation (TCM) is a potential candidate for error correction in multilevel flash memories. TCM typically requires probabilistic decoding algorithms (e.g. BCJR), that can be conveniently implemented in the analog domain. In this work, we study the feasibility and complexity of the analog approach, proposing transistor-level solutions for the building blocks of the decoder. In the case of a TCM designed for an effective storage density of 3 information bits/cell, an analog decoder for a 196-bit field features an estimated current draw of2. Silvia Soldà, Daniele Vogrig, Andrea Bevilacqua, Andrea Gerosa, Andrea Neviani |
ISCAS | 5 |
| 2007 | Quadrature VCOs Based on Coupled PLLsabstractThis work proposed to use a two-element array of coupled PLLs to generate quadrature signals. The main advantage of this technique is that phase noise performance and quadrature accuracy do not trade-off. A dual-mode quadrature VCO designed in a digital0.13μmCMOS technology is used as test vehicle to verify the viability of the proposed concept. Andrea Bevilacqua, Christoph Sandner, Andrea Gerosa, Andrea Neviani |
ISCAS | 4 |
| 2007 | A 0.18-µm CMOS Squarer Circuit for a Non-Coherent UWB ReceiverabstractSquaring circuits are an important building block for impulse-radio UWB non-coherent receivers. This work proposes a squarer, based on the quadratic law of saturated transistors. Such a circuit has already been proposed for lower frequency applications, therefore this work focuses on the extension to ultra wide bandwidth, with particular care to the consequences related to the deviation from the ideal quadratic law of 0.18μm CMOS transistors. Simulation results prove that the proposed squarer can accommodate the whole UWB bandwidth, with a total power consumption of 1.7mW. Andrea Gerosa, M. Soldan, Alessandro Bevilacqua, Andrea Neviani |
ISCAS | 4 |
| 2006 | Reconfigurable Analog Decoder for a Serially Concatenated Convolutional CodeabstractIn this paper, the design of a fully analog iterative decoder for a serially concatenated convolutional code is presented. The decoder is reconfigurable in both block length and code rate. An interleaver size up to 2400 bit is considered. The decoder core implements a single SISO working on a window of the whole code trellis. It is then reused several times to decode the two constituent codes. The resulting decoder performs iterations, but it is fully analog. The extrinsic information exchanged in the decoding process is stored in an analog memory and permuted through a reconfigurable interleaver. Behavioral analysis of the decoder as well as precision and mismatch impact on performance are reported in the paper. Alexandre Graell i Amat, Daniele Vogrig, Sergio Benedetto, Guido Montorsi, Andrea Neviani, Andrea Gerosa |
GLOBECOM | 5 |
| 2006 | An optimal architecture for a multimode ADC, based on the cascade of a Sigma Delta modulator and a flash converterabstractThis work proposes an architecture for a multimode ADC. The architecture is based on the cascade of a single-bit 2-1 SigmaDelta modulator and a 4-bit flash converter. Furthermore such an architecture is mapped in a modular implementation, which allows to easily reconfigure modulator order, oversampling ratio and equivalent number of bits of the internal quantizer. As a consequence the proposed converter can fulfil the requirement of a wide range of standards: GSM, Bluetooth, UMTS and WLANa. The achieved dynamic range is 85dB, 72dB, 62dB and 59dB for GSM, Bluetooth, UMTS and WLANa, respectively. The corresponding power consumption is 4.6mW, 5.5mW, 7.4mW and 18.9mW Andrea Gerosa, Andrea Bevilacqua, Andrea Neviani, Andrea Xotta |
ISCAS | 3 |
| 2006 | Design, Simulation, and Testing of a CMOS Analog Decoder for the Block Length-40 UMTS Turbo CodeabstractIn this paper, we present an all-analog implementation of the rate-1/3, block length 40, UMTS turbo decoder. The prototype was designed and fabricated in a 0.35$mu$m CMOS technology and operates at 3.3 V. We also introduce a discrete-time first-order model for analog decoders which allows fast BER simulations, while taking into account circuit transient behavior and component mismatch. The model is applied to the rate-1/3 analog turbo decoder for UMTS defined in the 3GPP standard, and the discrete-time model predictions are compared with the decoder experimental performance and the transistor-level simulations. These results demonstrated that this model can be successfully used as a tool to both predict analog decoder performance and give design guidelines for complex decoders, for which circuit-level simulations are impractical. Alexandre Graell i Amat, Sergio Benedetto, Guido Montorsi, Daniele Vogrig, Andrea Neviani, Andrea Gerosa |
IEEE Trans. Commun. | 5 |
| 2006 | Design, Simulation, and Testing of a CMOS Analog Decoder for the Block Length-40 UMTS Turbo CodeabstractIn this paper, we present an all-analog implementation of the rate-1/3, block length 40, universal mobile telecommunications system (UMTS) turbo decoder. The prototype was designed and fabricated in 0.35$\mu$m complementary metal-oxide-semiconductor technology and operates at 3.3 V. We also introduce a discrete-time first-order model for analog decoders which allows fast bit-error rate simulations, while taking into account circuit transient behavior and component mismatch. The model is applied to the rate-1/3 analog turbo decoder for UMTS defined in the Third Generation Partnership Project standard, and the discrete-time model predictions are compared with the decoder experimental performance and the transistor-level simulations. These results demonstrated that this model can be successfully used as a tool to both predict analog decoder performance and give design guidelines for complex decoders, for which circuit-level simulations are impractical. Alexandre Graell i Amat, Sergio Benedetto, Guido Montorsi, Daniele Vogrig, Andrea Neviani, Andrea Gerosa |
IEEE Trans. Commun. | 5 |
| 2005 | An analog turbo decoder for the rate-1/3, 40 bit, UMTS turbo codeabstractIn this paper, we discuss the design and testing results of an analog 0.35 /spl mu/m CMOS turbo decoder for the rate-1/3, 40 bit UMTS turbo code. The prototype was successfully tested at nominal conditions (2 Mbit/s), with an overall power consumption of 10.3 mW at 3.3 V. The tested BER curve shows a limited performance loss (about 0.5 dB) with respect to that of the digital implementation. We also discuss a discrete-time model of the analog decoder which allows us to run BER simulations including circuit transient behavior and device mismatch in a very short time. Circuit-level simulations demonstrate the validity of our model. According to the discrete-time simulation, a significant contribution to the performance loss is due to device mismatch. Alexandre Graell i Amat, Sergio Benedetto, Guido Montorsi, Daniele Vogrig, Andrea Neviani, Andrea Gerosa |
ICC | 5 |
| 2004 | An analog turbo decoder for the UMTS standardabstractThe design and test results of a three-metal, double-poly, 0.35 μm; CMOS analog turbo decoder for the rate-1/3, block length 40, UMTS turbo code, are presented. A discrete-time model of analog decoding networks is also presented. This model can be used as a tool to both predict chip performance in a short time and give design guidelines for complex decoders, for which circuit-level simulations are impractical. Alexandre Graell i Amat, Guido Montorsi, Sergio Benedetto, Daniele Vogrig, Andrea Neviani, Andrea Gerosa |
ISIT | 5 |
| 2002 | An analog decoder for concatenated magnetic recording schemesabstractThis paper presents an all-analog iterative decoding network for an EPR4 magnetic recording system. A powerful serially concatenated architecture is considered, consisting of a simple outer code, an interleaver with reasonable size and a rate 1 EPR4 channel as inner code. The analog chip design is based on analog 0.18 /spl mu/m CMOS technology. Simulation results for both digital and analog implementations are shown. Practical implementation issues such as considerations of mismatch effects over performance are also discussed. Alexandre Graell i Amat, Guido Montorsi, Andrea Neviani, Andrea Xotta |
ICC | 3 |
| 2000 | Low-power sensing and digitization of cardiac signals based on sigma-delta conversion (poster session)abstractIn this work we propose an architecture for the acquisition and digitization of cardiac signals in a pace-maker, based on ΣΔ modulation. Due to the characteristics of such an application, the proposed system presents the typical design challenges of low-voltage, low-power circuits. The work demonstrates that, thanks to the narrow bandwidth typical of biological signals (50-150 Hz), oversampling conversion techniques can be advantageous in terms of power dissipation at a given dynamic range. The converter is designed in a 0.8 μm CMOS technology using the switched Op-Amp technique. The ΣΔ converter is a third order modulator with an oversampled frequency of about 8KHz and the circuitcan operate at a minimum supply voltage of 2 V, while dissipating 2 μW at most. According to simulation results the dynamic range is larger than 50 dB. Andrea Gerosa, Arianna Novo, Andrea Neviani |
ISLPED | 3 |