ASTER LABS, INC. — National Aeronautics and Space Administration STTR Phase I: T10

ASTER LABS, INC. — STTR Phase I award from National Aeronautics and Space Administration.

Amount
$124,961
Agency
National Aeronautics and Space Administration
Program / Phase
STTR · Phase I
Topic
T10
Solicitation
STTR_21_P1
NAICS
Place of performance
MN
Period
2021-05-17 → 2022-06-19

Description

This program will develop an innovative software tool for optimizing control of heterogeneous swarming systems using Swarm Signal Temporal Logic (SSTL) specifications. The proposed solution will enable task prioritization and scheduling, and distributed optimization of heterogeneous multi-agent systems (MAS) with the ability to scale the agent team, environment, and degree of heterogeneity with minimal effects to the computational complexity. The SSTL framework enables swarm time- and spatial-based task definitions and scheduling. Methods for coordination and control of agent behavior, in terms of desired robustness and total energy consumption, will be implemented using game theoretics and gradient descent in a distributed manner. Inter-agent communication methods will be developed, based on the nearest-neighbor communications models for use in the logic framework. SSTL algorithms developed will be implemented into a set of MATLAB language modules capable of declaring mission and objective requirements based on definitions of agents, tasks, and scheduling. The SSTL has a broad application range, including sets of multiple spacecraft, unmanned aerial/ground vehicles, and maritime vessels coordinating and cooperating in a MAS. Agent properties, such as dynamics models, mass, charge level, energy efficiency, communication range, and control update rates will be modeled. Software demonstrations will be performed to illustrate the feasibility and capabilities of the temporal logic approach to control numerous types of MAS vehicles and applications using SSTL specifications. Simulation valuations will determine algorithmic performance in terms of control convergence, energy consumption, and rates of successful task completion. System use cases will be outlined via CONOPS development, detailing the potential utility and benefits of SSTL algorithms for NASA and commercial applications.