International audienceIn this work, we address the systematic biases and random errors stemming from finite step sizes encountered in diffusion simulations. We introduce the Effective Geometry Monte Carlo (EG-MC) simulation algorithm which modifies the geometry of the receiver. We motivate our approach in a 1D toy model and then apply our findings to a spherical absorbing receiver in a 3D unbounded environment. We show that with minimal computational cost the impulse response of this receiver can be precisely simulated using EG-MC. Afterwards, we demonstrate the accuracy of our simulations and give tight constraints on the single free parameter in EG-MC. Finally, we comment on the range of applicability of our results. While we present the ...
We address the question of numerically simulating the coupling of diffusion, advection and one-speed...
We address the question of numerically simulating the coupling of diffusion, advection and one-speed...
We address the question of numerically simulating the coupling of diffusion, advection and one-speed...
International audienceIn this work, we address the systematic biases and random errors stemming from...
International audienceIn this work, we address the systematic biases and random errors stemming from...
The simulation of diffusion-based molecular communication systems with absorbing receivers often req...
A novel a priori Monte Carlo (APMC) algorithm is proposed to accurately simulate the molecules absor...
Several importance sampling strategies are developed and tested for stereographic projection diffusi...
Several importance sampling strategies are developed and tested for stereographic projection diffusi...
Several importance sampling strategies are developed and tested for stereographic projection diffusi...
Several importance sampling strategies are developed and tested for stereographic projection diffusi...
Several importance sampling strategies are developed and tested for stereographic projection diffusi...
International audienceWe propose and test a quasi-Monte Carlo (QMC) method for solving the diffusion...
Monte-Carlo Diffusion Simulations (MCDS) have been used extensively as a ground truth tool for the v...
© . This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://creativecommo...
We address the question of numerically simulating the coupling of diffusion, advection and one-speed...
We address the question of numerically simulating the coupling of diffusion, advection and one-speed...
We address the question of numerically simulating the coupling of diffusion, advection and one-speed...
International audienceIn this work, we address the systematic biases and random errors stemming from...
International audienceIn this work, we address the systematic biases and random errors stemming from...
The simulation of diffusion-based molecular communication systems with absorbing receivers often req...
A novel a priori Monte Carlo (APMC) algorithm is proposed to accurately simulate the molecules absor...
Several importance sampling strategies are developed and tested for stereographic projection diffusi...
Several importance sampling strategies are developed and tested for stereographic projection diffusi...
Several importance sampling strategies are developed and tested for stereographic projection diffusi...
Several importance sampling strategies are developed and tested for stereographic projection diffusi...
Several importance sampling strategies are developed and tested for stereographic projection diffusi...
International audienceWe propose and test a quasi-Monte Carlo (QMC) method for solving the diffusion...
Monte-Carlo Diffusion Simulations (MCDS) have been used extensively as a ground truth tool for the v...
© . This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://creativecommo...
We address the question of numerically simulating the coupling of diffusion, advection and one-speed...
We address the question of numerically simulating the coupling of diffusion, advection and one-speed...
We address the question of numerically simulating the coupling of diffusion, advection and one-speed...