activity
20182021
collaborators

13 papers

cs.ET2021

Channel Responses for the Molecule Release from Spherical Homogeneous Matrix Carriers

Maximilian Schäfer, Yolanda Salinas, Alexander Ruderer +6

Molecular communications is a promising framework for the design of controlled-release drug delivery systems. Under this framework, drug carriers, diseased cells, and the channel a…

cs.ET2021

Channel Modeling for Drug Carrier Matrices

Maximilian Schäfer, Yolanda Salinas, Alexander Ruderer +4

Molecular communications is a promising framework for the design of controlled-release drug delivery systems. In this framework, drug carriers are modeled as transmitters, the dise…

cs.ET2020

Colour-Specific Microfluidic Droplet Detection for Molecular Communication

Max Bartunik, Marco Fleischer, Werner Haselmayr +1

Droplet-based microfluidic systems are a promising platform forlab-on-a-chip (LoC) applications. These systems can also be used toenhance LoC applications with integrated droplet c…

eess.SP2020

On the Inclusion and Utilization of Pilot Tones in Unique Word OFDM

Christian Hofbauer, Werner Haselmayr, Hans-Peter Bernhard +1

Unique word-orthogonal frequency division multiplexing (UW-OFDM) is known to provide various performance benefits over conventional OFDM using cyclic prefixes (CP). Most important,…

cs.ET2019

Spherical Diffusion Model with Semi-Permeable Boundary: A Transfer Function Approach

Maximilian Schäfer, Wayan Wicke, Werner Haselmayr +2

The derivation of suitable analytical models is an important step for the design and analysis of molecular communication systems. However, many existing models have limited applica…

eess.SP2018

A stochastic computing architecture for iterative estimation

Michael Lunglmayr, Daniel Wiesinger, Werner Haselmayr

Stochastic computing (SC) is a promising candidate for fault tolerant computing in digital circuits. We present a novel stochastic computing estimation architecture allowing to sol…