In this paper, we present MIMO-TTR+, a topology-transparent scheduling protocol for multi-hop wireless networks with MIMO-enabled transceivers which utilize the channel bandwidth effectively.
In this project, we present MIMOTTR+, a topology-transparent scheduling protocol for multi-hop wireless networks with MIMO-enabled transceivers. Multi-hop packet radio networks with a volatile topology pose significant challenges in the design of scheduling protocols.
It is desired that changes in topology do not trigger updates to existing schedules. Topology-transparent scheduling algorithms achieve this objective as they work only with global network parameters, namely the maximum size and maximum nodal degree of the network.
The protocol uses RTS/CTS handshaking with multiple RTS mini slots to utilize the channel bandwidth effectively even when the maximum nodal degree exceeds the number of receive antennas at the destination node. We perform detailed mathematical analysis and numerical simulations to show the superiority of our approach over similar ones in the literature.
Keywords: Wireless network, Topology-transparent scheduling (TTS), Multihop, MIMO, RTS/CTS.
NOTE: Without the concern of our team, please don't submit to the college. This Abstract varies based on student requirements.

Software & Hardware Requirements:
Software: Matlab 2018a or above
Hardware:
Operating Systems:
Processors:
Minimum: Any Intel or AMD x86-64 processor
Recommended: Any Intel or AMD x86-64 processor with four logical cores and AVX2 instruction set support
Disk:
Minimum: 2.9 GB of HDD space for MATLAB only, 5-8 GB for a typical installation
Recommended: An SSD is recommended a full installation of all Math Works products may take up to 29 GB of disk space
RAM:
Minimum: 4 GB
Recommended: 8 GB