This paper proposes a feedback-controlled adaptive method for detecting signals in diffusion-based molecular communication (MC) systems. Signal detection via a receiver nanomachine is a critical challenge for the exchange of information in MC systems. Incorrect estimations or small errors in signal detection can lead to high data detection errors. Existing methods for improving detection performance require high time costs or computational complexity. This paper proposes a simple and practical method that enables receiver nanomachines to automatically estimate signal detection times according to the measured molecular concentrations and weighted feedback errors. The proposed method adjusts the detection time even when the initial parameter ...
In the nanonetworking literature, many solutions have been suggested to enable the nanomachine-to-na...
Diffusion Based Molecular Communication (DBMC) uses messenger molecules to transfer information betw...
Diffusion Based Molecular Communication (DBMC) uses messenger molecules to transfer information betw...
In the Molecular Communication (MC), molecules are utilized to encode, transmit, and receive informa...
Abstract—Nanonetworks, the interconnection of nanosystems, are envisaged to greatly expand the appli...
In diffusion-based molecular communication (MC), the most common modulation technique is based on th...
Diffusive molecular communication (MC) is a promising strategy for the transfer of information in sy...
Diffusive molecular communication (MC) is a promising strategy for the transfer of information in sy...
Molecular communication (MC) is a new communication engineering paradigm. The main characteristic of...
Multi-scale molecular communication (MC) employs the characteristics of information molecules for in...
Abstract—Nanonetworks, the interconnection of nanosystems, are envisaged to greatly expand the appli...
Diffusion Based Molecular Communication (DBMC) uses messenger molecules to transfer information betw...
Diffusion Based Molecular Communication (DBMC) uses messenger molecules to transfer information betw...
Diffusion Based Molecular Communication (DBMC) uses messenger molecules to transfer information betw...
Diffusion Based Molecular Communication (DBMC) uses messenger molecules to transfer information betw...
In the nanonetworking literature, many solutions have been suggested to enable the nanomachine-to-na...
Diffusion Based Molecular Communication (DBMC) uses messenger molecules to transfer information betw...
Diffusion Based Molecular Communication (DBMC) uses messenger molecules to transfer information betw...
In the Molecular Communication (MC), molecules are utilized to encode, transmit, and receive informa...
Abstract—Nanonetworks, the interconnection of nanosystems, are envisaged to greatly expand the appli...
In diffusion-based molecular communication (MC), the most common modulation technique is based on th...
Diffusive molecular communication (MC) is a promising strategy for the transfer of information in sy...
Diffusive molecular communication (MC) is a promising strategy for the transfer of information in sy...
Molecular communication (MC) is a new communication engineering paradigm. The main characteristic of...
Multi-scale molecular communication (MC) employs the characteristics of information molecules for in...
Abstract—Nanonetworks, the interconnection of nanosystems, are envisaged to greatly expand the appli...
Diffusion Based Molecular Communication (DBMC) uses messenger molecules to transfer information betw...
Diffusion Based Molecular Communication (DBMC) uses messenger molecules to transfer information betw...
Diffusion Based Molecular Communication (DBMC) uses messenger molecules to transfer information betw...
Diffusion Based Molecular Communication (DBMC) uses messenger molecules to transfer information betw...
In the nanonetworking literature, many solutions have been suggested to enable the nanomachine-to-na...
Diffusion Based Molecular Communication (DBMC) uses messenger molecules to transfer information betw...
Diffusion Based Molecular Communication (DBMC) uses messenger molecules to transfer information betw...