Adrian Arellano-Delgado

dblp:207/4390 · DBLP profile ↗
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5ranked-venue papers
1as first author
4since 2021 · last 2026
0000-0001-9175-1181ORCID · verified

Domains — the database's venue-derived domains; a paper can count in several

Systems, architecture and hardware · 4 · 1 first-author · 4 since 2021Applied, interdisciplinary, general and emerging computing · 1
YearPublicationVenuePosition
2026 Coupling strength analysis in complex networks: A master stability function approach
Adrian Arellano-Delgado, Miguel Ángel Murillo-Escobar, Liliana Cardoza-Avendaño, Ernesto Zambrano-Serrano, César Cruz-Hernández
Integr.1
2025 Spherical chaotic trajectory tracking and formation of unmanned aerial vehicles in master-slave configuration with intermediary system
A. Durán-Covarrubias, Adrian Arellano-Delgado, César Cruz-Hernández, J. J. Cetina-Denis, Rosa Martha López-Gutiérrez
Integr.2
2024 Digital synchronization of the MACM chaotic system by using PIC24-microcontrollers and the SPI-protocol
Rodrigo Méndez-Ramírez, Adrian Arellano-Delgado, Miguel Ángel Murillo-Escobar, César Cruz-Hernández
Integr.2
2024 Comparison of two new chaos-based pseudorandom number generators implemented in microcontroller
Daniel Murillo-Escobar, K. Vega-Pérez, Miguel Ángel Murillo-Escobar, Adrian Arellano-Delgado, Rosa Martha López-Gutiérrez
Integr.4
2018 Chaotic digital cryptosystem using serial peripheral interface protocol and its dsPIC implementation
abstract
The current massive use of digital communications demands a secure link by using an embedded system (ES) with data encryption at the protocol level. The serial peripheral interface (SPI) protocol is commonly used by manufacturers of ESs and integrated circuits for applications in areas such as wired and wireless communications. We present the design and experimental implementation of a chaotic encryption and decryption algorithm applied to the SPI communication protocol. The design of the chaotic encryption algorithm along with its counterpart in the decryption is based on the chaotic Hénon map and two methods for blur and permute (in combination with DNA sequences). The SPI protocol is configured in 16 bits to synchronize a transmitter and a receiver considering a symmetric key. Results are experimentally proved using two low-cost dsPIC microcontrollers as ESs. The SPI digital-to-analog converter is used to process, acquire, and reconstruct confidential messages based on its properties for digital signal processing. Finally, security of the cryptogram is proved by a statistical test. The digital processing capacity of the algorithm is validated by dsPIC microcontrollers.
Rodrigo Méndez-Ramírez, Adrian Arellano-Delgado, César Cruz-Hernández, Fausto Abundiz-Pérez, Rigoberto Martínez-Clark
Frontiers Inf. Technol. Electron. Eng.2