EDBT 2026 Demo / reviewers in the wild / expert
Pablo Ramirez-Espinosa
dblp:202/2368 · also Pablo Ramírez-Espinosa
· DBLP profile ↗
16ranked-venue papers
7as first author
13since 2021 · last 2026
0000-0003-1161-0747ORCID · verified
Domains — the database's venue-derived domains; a paper can count in several
Computer networks · 13 · 6 first-author · 11 since 2021Graphics, computer vision, multimedia, augmented reality and games · 2 · 1 first-author · 1 since 2021Security and privacy · 1 · 1 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2026 | On Models With Power Conservation in Reflective Intelligent Surfaces and Their Design ImplicationsabstractReconfigurable Intelligent Surfaces (RISs) are potential enablers of future wireless communications and sensing applications and use-cases. The RIS is envisioned as a dynamically controllable surface that is capable of transforming impinging electromagnetic waves in terms of angles and polarization. Many models have been proposed to predict the wave-transformation capabilities of potential RISs, where power conservation is ensured by enforcing that the scattered power equals the power impinging upon the aperture of the RIS, without considering whether the scattered field adds coherently of destructively with the source field. In effect, this means that power is not conserved, as elaborated in this paper. With the goal of investigating the implications of global and local power conservation in RISs, this work considers a single-layer metasurface based RIS. A complete end-to-end communications channel is given through polarizability modeling and conditions for power conservation and channel reciprocity are derived. The implications of the power conservation conditions upon the end-to-end communications channel are analyzed. Robin Jess Williams, Pablo Ramirez-Espinosa, Olena Semenovska, Petar Popovski |
IEEE Trans. Wirel. Commun. | 2 |
| 2025 | Energy Efficiency of DMAs vs. Conventional MIMO: A Sensitivity AnalysisabstractMotivated by the stringent and challenging need for 'greener communications' in increasingly power-hungry 5 G networks, this paper presents a detailed energy efficiency analysis for three different multi-antenna architectures, namely fullydigital arrays, hybrid arrays, and dynamic metasurface antennas (DMAs). By leveraging a circuital model, which captures mutual coupling, insertion losses, propagation through the waveguides in DMAs and other electromagnetic phenomena, we design a transmit Wiener filter solution for the three systems. We then use these results to analyze the energy efficiency, considering different consumption models and supplied power, and with particular focus on the impact of the physical phenomena. DMAs emerge as an efficient alternative to classical arrays across diverse tested scenarios, most notably under low transmission power, strong coupling, and scalability requirements. Pablo Ramirez-Espinosa, David Morales-Jiménez, Beatriz Soret |
ICC | 1 |
| 2025 | Prediction of Rare Channel Conditions Using Bayesian Statistics and Extreme Value TheoryabstractEstimating the probability of rare channel conditions is a central challenge in ultra-reliable wireless communication, where random events, such as deep fades, can cause sudden variations in the channel quality. This paper proposes a sample-efficient framework for predicting the statistics of such events by utilizing spatial dependency between channel measurements acquired from various locations. The proposed framework combines radio maps with non-parametric models and extreme value theory (EVT) to estimate rare-event channel statistics under a Bayesian formulation. The framework can be applied to a wide range of problems in wireless communication and is exemplified by rate selection in ultra-reliable communications. Notably, besides simulated data, the proposed framework is also validated with experimental measurements. The results in both cases show that the Bayesian formulation provides significantly better results in terms of throughput compared to baselines that do not leverage measurements from surrounding locations. It is also observed that the models based on EVT are generally more accurate in predicting rare-event statistics than non-parametric models, especially when only a limited number of channel samples are available. Overall, the proposed methods can significantly reduce the number of measurements required to predict rare channel conditions and guarantee reliability. Tobias Kallehauge, Anders E. Kalør, Pablo Ramirez-Espinosa, Christophe Biscio, Petar Popovski |
IEEE Trans. Commun. | 3 |
| 2024 | On the Statistical Relation of Ultra-Reliable Wireless and Location EstimationabstractLocation information is often used as a proxy to guarantee the performance of a wireless communication link. However, localization errors can result in a significant mismatch with the guarantees, particularly detrimental to users operating the ultra-reliable low-latency communication (URLLC) regime. This paper unveils the fundamental statistical relations between location estimation uncertainty and wireless link reliability, specifically in the context of rate selection for ultra-reliable communication. We start with a simple one-dimensional narrowband Rayleigh fading scenario and build towards a two-dimensional scenario in a rich scattering environment. The wireless link reliability is characterized by the meta-probability, the probability with respect to localization error of exceeding the outage capacity, and by removing other sources of errors in the system, we show that reliability is sensitive to localization errors. The ϵ-outage coherence radius is defined and shown to provide valuable insight into the problem of location-based rate selection. However, it is generally challenging to guarantee reliability without accurate knowledge of the propagation environment. Finally, several rate-selection schemes are proposed, showcasing the problem’s dynamics and revealing that properly accounting for the localization error is critical to ensure good performance in terms of reliability and achievable throughput. Tobias Kallehauge, Martin Voigt Vejling, Pablo Ramirez-Espinosa, Kimmo Kansanen, Henk Wymeersch, Petar Popovski |
IEEE Trans. Wirel. Commun. | 3 |
| 2024 | A New Spatial Block-Correlation Model for Fluid Antenna SystemsabstractPowered by position-flexible antennas, the emerging fluid antenna system (FAS) technology is postulated as a key enabler for massive connectivity in 6G networks. The free movement of antenna elements enables the opportunistic minimization of interference, allowing several users to share the same radio channel without the need of precoding. However, the true potential of FAS is still unknown due to the extremely high spatial correlation of the wireless channel between very close-by antenna positions. To unveil the multiplexing capabilities of FAS, proper (simple yet accurate) modeling of the spatial correlation is prominently needed. Realistic classical models such as Jakes’s are prohibitively complex, rendering intractable analyses, while state-of-the-art approximations often are too simplistic and poorly accurate. Aiming to fill this gap, we here propose a general framework to approximate spatial correlation by block-diagonal matrices, motivated by the well-known block fading assumption and by statistical results on large correlation matrices. The proposed block-correlation model makes the performance analysis possible, and tightly approximates the results obtained with realistic models (Jakes’s and Clarke’s). Our framework is leveraged to analyze fluid antenna multiple access (FAMA) systems, evaluating their performance for both one- and two-dimensional fluid antennas. Pablo Ramirez-Espinosa, David Morales-Jiménez, Kai-Kit Wong |
IEEE Trans. Wirel. Commun. | 1 |
| 2023 | Radio Sensing with Large Intelligent Surface for 6GabstractThis paper leverages the potential of Large Intelligent Surfaces (LIS) for radio sensing in 6G wireless networks. By taking advantage of arbitrary communication signals occurring in the scenario, we apply direct processing to the output signal from the LIS to obtain a radio map that describes the physical presence of passive devices (scatterers, humans) which act as virtual sources due to the communication signal reflections. We then assess the usage of machine learning and computer vision methods including clustering, template matching and component labeling to extract meaningful information from these radio maps. As an exemplary use case, we evaluate this method for passive multi-human detection in an indoor setting. The results show that the presented method has high application potential as we are able to detect around 98% of humans passively even in quite unfavorable Signal-to-Noise Ratio (SNR) conditions. Cristian J. Vaca-Rubio, Pablo Ramirez-Espinosa, Kimmo Kansanen, Zheng-Hua Tan, Elisabeth de Carvalho |
ICASSP | 2 |
| 2023 | Erratum to "Electromagnetic Based Communication Model for Dynamic Metasurface Antennas"abstractDue to a production error in[1], there is an error with the definition of the real and imaginary part operators. They should be defined as Re{} and Im{}. However, the {} are missing in all the equations. We apologize for this error. Robin Jess Williams, Pablo Ramirez-Espinosa, Jide Yuan, Elisabeth de Carvalho |
IEEE Trans. Wirel. Commun. | 2 |
| 2022 | Predictive Rate Selection for Ultra-Reliable Communication using Statistical Radio MapsabstractThis paper proposes exploiting the spatial correlation of wireless channel statistics beyond the conventional received signal strength maps by constructing statistical radio maps to predict any relevant channel statistics to assist communications. Specifically, from stored channel samples acquired by previous users in the network, we use Gaussian processes (GPs) to estimate quantiles of the channel distribution at a new position using a non-parametric model. This prior information is then used to select the transmission rate for some target level of reliability. The approach is tested with synthetic data, simulated from urban micro-cell environments, highlighting how the proposed solution helps to reduce the training estimation phase, which is especially attractive for the tight latency constraints inherent to ultra-reliable low-latency (URLLC) deployments. Tobias Kallehauge, Pablo Ramirez-Espinosa, Anders E. Kalør, Christophe Biscio, Petar Popovski |
GLOBECOM | 2 |
| 2022 | Performance Evaluation of Dynamic Metasurface Antennas: Impact of Insertion Losses and CouplingabstractThis paper evaluates the performance of multi-user massive multiple-input multiple-output (MIMO) systems in which the base station is equipped with a dynamic metasurface antenna (DMA). Due to the physical implementation of DMAs, conventional models widely-used in MIMO are no longer valid, and electromagnetic phenomena such as mutual coupling, insertion losses and reflections inside the waveguides need to be considered. Hence, starting from a recently proposed electromagnetic model for DMAs, we formulate a zero-forcing optimization problem, yielding an unconstrained objective function with known gradient. The performance is compared with that of full-digital and hybrid massive MIMO, focusing on the impact of insertion losses and mutual coupling. Pablo Ramirez-Espinosa, Robin Jess Williams, Jide Yuan, Elisabeth de Carvalho |
GLOBECOM | 1 |
| 2022 | Electromagnetic Based Communication Model for Dynamic Metasurface AntennasabstractDynamic metasurface antennas (DMAs) arise as a promising technology in the field of massive multiple-input multiple-output (mMIMO) systems, offering the possibility of integrating a large number of antennas in a limited —and potentially large— aperture while keeping the required number of radio-frequency (RF) chains under control. Although envisioned as practical realizations of mMIMO systems, DMAs represent a new paradigm in the design of signal processing techniques (such as beamforming) due to the constraints inherent to their physical implementation, for which no complete models are available yet. In this work, we propose a complete and electromagnetic-compliant narrowband communication model for a generic DMA based system. Specifically, the model accounts for: i) the wave propagation and reflections throughout the waveguides that feed the antenna elements, ii) the mutual coupling both through the air and the waveguides, and iii) the insertion losses. Also, we integrate the electromagnetic model in the conventional digital communication model, providing a complete and useful framework to design and characterize the performance of these systems. Finally, the accuracy of the model is verified through full-wave simulations. Robin Jess Williams, Pablo Ramirez-Espinosa, Jide Yuan, Elisabeth de Carvalho |
IEEE Trans. Wirel. Commun. | 2 |
| 2021 | Multiuser MIMO with Large Intelligent Surfaces: Communication Model and Transmit DesignabstractThis paper proposes a communication model for multiuser multiple-input multiple-output (MIMO) systems based on large intelligent surfaces (LIS), where the LIS is modeled as a collection of tightly packed antenna elements. The LIS system is first represented in a circuital way, obtaining expressions for the radiated and received powers, as well as for the coupling between the distinct elements. Then, this circuital model is used to characterize the channel in a line-of-sight propagation scenario, rendering the basis for the analysis and design of MIMO systems. Due to the particular properties of LIS, the model accounts for superdirectivity and mutual coupling effects along with near field propagation, necessary in those situations where the array dimension becomes very large. Finally, with the proposed model, the matched filter transmitter and the weighted minimum mean square error precoding are derived under both realistic constraints: limited radiated power and maximum ohmic losses. Robin Jess Williams, Pablo Ramirez-Espinosa, Elisabeth de Carvalho, Thomas L. Marzetta |
ICC | 2 |
| 2021 | Effect of Correlation Between Information and Energy Links in Secure Wireless Powered CommunicationsabstractIn this paper, we investigate the impact of correlation between the energy and information links in wireless power transfer systems, from a physical layer security perspective. With that aim, we first determine how correlation can affect system capacity in practical energy harvesting set-ups. We quantify that even though link correlation improves the average signal-to-noise ratio (SNR) for a fixed transmit power, it also increases its variance, which ultimately degrades capacity. Based on this observation, we show that correlation between the energy and information links may be detrimental for the secrecy capacity in the legitimate high SNR regime, but beneficial in the low-SNR regime, whenever such correlation affects the legitimate user. Conversely, we also point out that when link correlation between the energy and wiretap links is rigorously accounted for, it barely affects secrecy performance, causing only a minor degradation in some instances. Antonio Tarrías-Muñoz, José Luis Matez-Bandera, Pablo Ramirez-Espinosa, Francisco Javier López-Martínez |
IEEE Trans. Inf. Forensics Secur. | 3 |
| 2021 | Composite Fading Models Based on Inverse Gamma Shadowing: Theory and ValidationabstractWe introduce a general approach to characterize composite fading models based on inverse gamma (IG) shadowing. We first determine to what extent the IG distribution is an adequate choice for modeling shadow fading, by means of a comprehensive test with field measurements and other distributions conventionally used for this purpose. Then, we prove that the probability density function and cumulative distribution function of any IG-based composite fading model are directly expressed in terms of a Laplace-domain statistic of the underlying fast fading model and, in some relevant cases, as a mixture of well-known state-of-the-art distributions. Also, exact and asymptotic expressions for the outage probability are provided, which are valid for any choice of baseline fading distribution. Finally, we exemplify our approach by presenting several application examples for IG-based composite fading models, for which their statistical characterization is directly obtained in a simple form. Pablo Ramirez-Espinosa, Francisco Javier López-Martínez |
IEEE Trans. Wirel. Commun. | 1 |
| 2019 | The alpha-k-µ Shadowed Fading Distribution: Statistical Characterization and ApplicationsabstractWe introduce the α-κ-μ shadowed (α-KMS) fading distribution as a natural generalization of the versatile α-κ-μ and α-η-μ distributions. The α-KMS fading distribution unifies a wide set of fading distributions, as it includes the α-κ-μ, αη-μ, α-μ, Weibull, κ-μ shadowed, Rician shadowed, κ-μ and ημ distributions as special cases, together with classical models like Rice, Nakagami-m, Hoyt, Rayleigh and one-sided Gaussian. Notably, the α-KMS distribution reduces to a finite mixture of α-μ distributions when the fading parameters μ and m take positive integer values, so that performance analysis over αKMS fading channels can be tackled by leveraging previous (existing) results in the literature for the simpler α-μ case. As application examples, important performance metrics like the outage probability and average channel capacity are analyzed. Pablo Ramirez-Espinosa, Jules Merlin Mouatcho Moualeu, Daniel B. da Costa 0001, Francisco Javier López-Martínez |
GLOBECOM | 1 |
| 2019 | On the Utility of the Inverse Gamma Distribution in Modeling Composite Fading ChannelsabstractWe introduce a general approach to characterize composite fading models based on inverse gamma (IG) shad- owing. We first determine to what extent the IG distribution is an adequate choice for modeling shadow fading, by means of a comprehensive test with field measurements and other distributions conventionally used for this purpose. Then, we prove that the probability density function and cumulative density function of any IG-based composite fading model are directly expressed in terms of a Laplace-domain statistic of the underlying fast fading model, and in some relevant cases, as a mixture of well-known state-of-the-art distributions. We exemplify our approach by presenting a composite IG/two-wave with diffuse power fading model, for which its statistical characterization is directly obtained in a simple form. Pablo Ramirez-Espinosa, Francisco Javier López-Martínez |
GLOBECOM | 1 |
| 2019 | New Approximation to Distribution of Positive RVs Applied to Gaussian Quadratic FormsabstractThis letter introduces a new approach to the problem of approximating the probability density function (PDF) and the cumulative distribution function (CDF) of a positive random variable. The novel approximation strategy is based on the analysis of a suitably defined sequence of auxiliary variables which converges in distribution to the target variable. By leveraging such convergence, simple approximations for both the CDF and PDF of the target variable are given in terms of the derivatives of its moment generating function (MGF). In contrast to classical approximation methods based on truncated series of moments or cumulants, our approximations always represent a valid distribution and the relative error between variables is independent of the variable under analysis. The derived results are then used to approximate the statistics of positive-definite real Gaussian quadratic forms, comparing our proposed approach with other existing approximations in the literature. Pablo Ramirez-Espinosa, David Morales-Jiménez, José Antonio Cortés, José F. Paris, Eduardo Martos-Naya |
IEEE Signal Process. Lett. | 1 |