- IoT and Edge/Fog Computing
- Software-Defined Networks and 5G
- Wireless Networks and Protocols
- Mobile Ad Hoc Networks
- Opportunistic and Delay-Tolerant Networks
- Telecommunications and Broadcasting Technologies
- Wireless Body Area Networks
- Advanced MIMO Systems Optimization
- Cooperative Communication and Network Coding
- Modular Robots and Swarm Intelligence
- Embedded Systems Design Techniques
- IPv6, Mobility, Handover, Networks, Security
- Advanced Optical Network Technologies
- IoT Networks and Protocols
- Real-Time Systems Scheduling
Universidad de Málaga
2019-2023
Very low latency and high reliability are two of the main requirements for new applications exploiting 5G networks. This is case remote operation robots or vehicles, autonomous interaction equipment in a factory, driving tactile internet applications. Although TCP/IP stack has been sufficient as end-to-end solution most history Internet, number surveys have appeared recently presenting many different methods managing communication to meet various technologies such that In this paper, we...
Tactile Internet (TI) refers to the transmission of touch and real-time control applications like remote for teleoperation machines, drones or vehicles. Traditional TCP UDP protocols are not suitable these applications, because they mainly designed content delivery non interactive applications. Some ideas from transport multimedia RTP closer Internet; however, do satisfy requirements low latency high reliability. In this paper, we present Multi-connection Protocol (MTIP), a novel protocol on...
Abstract Tactile Internet is an network that combines ultra-low latency with extremely high availability and reliability. Since traditional protocols, such as UDP TCP, cannot support this operation, other transport protocols are required to meet the stringent requirements of Internet. This paper evaluates implementation Multi-connection Protocol (MTIP), a multi-connectivity protocol for MTIP uses application status information select paths intelligently and, in so doing, improve reliability...
Tactile Internet refers to a network that enables real-time, high-reliability haptic communication and control between humans, machines, objects over the Internet. applications include remote of drones, cars or industrial tele-operation. In this context, Multi-connection Protocol (MTIP) is novel multipath transport protocol designed support requirements in large, private mobile networks. The objective paper analyze verify correctness performance MTIP ensure functions correctly under...
The coordination framework presented in this paper targets the overall supervision and E2E configuration of 5G testbeds. Features provided by cover service deployment, control, management, monitoring, analytics security testbeds to fulfil goals Key Performance Indicators (KPIs) monitoring validation. Moreover, offers functionalities needed for defining automating execution experiments. is also responsible exposing East/West interfaces entities other testbeds, facilitating interworking....
Tactile Internet defines applications for remotely controlling and manipulating critical devices that require perceived real-time operation with additional demanding requirements like reliability. These use cases stringent demand adequate transport protocols to take advantage of the underlying possibilities. Traditional transport-layer solutions TCP UDP are no longer sufficient, hence novel being developed support these applications. In this paper, we present an implementation evaluation...