Segregated FLS Processing Cores for V/STOL Autonomous Landing Guidance Assistant System using FPGA

06/05/2023
by   Hossam O. Ahmed, et al.
0

It is highly predicted that the roads and parking areas will be extremely congested with vehicles to the point that searching for a novel solution will not be an optional choice for conserving the sustainability rate of the overall humanity's development growth. Such issue could be overcome by developing modified generations of the Urban Air Mobility (UAM) vehicles that essentially depend on the Vertical and/or Short Take-Off and Landing (V/STOL) feature to increase the efficiency of landing capabilities on limited-space parking areas. The complexity of integrating an efficient and safe V/STOL feature in such UAM vehicles is notably difficult comparing with the conventional and normal techniques for landing and take-off. The efficient V/STOL feature should be carried out by a complete and collaborative Cyber-Physical System (CPS) processing architecture, such as the CPS-5C architecture. In this paper, we only proposed two CPS-5C physical layers of a V/STOL Autonomous Landing Guidance Assistant System (ALGAS2) processing unit to increase the reliability of the vertical landing mechanism. The proposed V/STOL-ALGAS2 system depends on Fuzzy Logic System (FLS) as the advanced control unit. Furthermore, the proposed ALGAS2 system depends on four symmetric and segregated processing ALGAS2 cores that processing the data in a fully parallel and independent manner to enhance many essential security and safety factors for the futuristic UAM vehicles. The proposed ALGAS2 digital circuits architecture has been designed using MATLAB and VHDL. Also, it has been further analyzed for the implementation and validation tests using the Intel Altera OpenVINO FPGA board. The proposed ALGAS processing unit attained a maximum computational processing performance of about 21.22 Giga Operations per Seconds (GOPS).

READ FULL TEXT

page 1

page 2

page 5

research
04/04/2023

Coarse Grained FLS-based Processor with Prognostic Malfunction Feature for UAM Drones using FPGA

Many overall safety factors need to be considered in the next generation...
research
05/02/2023

Fault Tolerant Processing Unit Using Gamma Distribution Sliding Window For Autonomous Landing Guidance System

To keep up with today's dense metropolitan areas and their accompanying ...
research
07/26/2020

Defining Digital Quadruplets in the Cyber-Physical-Social Space for Parallel Driving

Parallel driving is a novel framework to synthesize vehicle intelligence...
research
04/21/2020

Cyber-Physical Mobility Lab An Open-Source Platform for Networked and Autonomous Vehicles

We introduce our Cyber-Physical Mobility Lab (CPM Lab), a development en...
research
10/27/2017

A Single-Channel Architecture for Algebraic Integer Based 8×8 2-D DCT Computation

An area efficient row-parallel architecture is proposed for the real-tim...
research
05/24/2022

Efficient and Lightweight In-memory Computing Architecture for Hardware Security

The paper proposes in-memory computing (IMC) solution for the design and...
research
02/13/2022

Motion Sickness Modeling with Visual Vertical Estimation and Its Application to Autonomous Personal Mobility Vehicles

Passengers (drivers) of level 3-5 autonomous personal mobility vehicles ...

Please sign up or login with your details

Forgot password? Click here to reset