Initial Orbit Determination for the CR3BP using Particle Swarm Optimization

07/23/2022
by   David Zuehlke, et al.
0

This work utilizes a particle swarm optimizer (PSO) for initial orbit determination for a chief and deputy scenario in the circular restricted three-body problem (CR3BP). The PSO is used to minimize the difference between actual and estimated observations and knowledge of the chief's position with known CR3BP dynamics to determine the deputy's initial state. Convergence is achieved through limiting particle starting positions to feasible positions based on the known chief position, and sensor constraints. Parallel and GPU processing methods are used to improve computation time and provide an accurate initial state estimate for a variety of cislunar orbit geometries.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
06/23/2020

Particle Swarm Optimization for Energy Disaggregation in Industrial and Commercial Buildings

This paper provides a formalization of the energy disaggregation problem...
research
01/25/2021

Pseudo-Adaptive Penalization to Handle Constraints in Particle Swarm Optimizers

The penalization method is a popular technique to provide particle swarm...
research
07/02/2022

A fast converging particle swarm optimization through targeted, position-mutated, elitism (PSO-TPME)

We dramatically improve convergence speed and global exploration capabil...
research
02/05/2020

Convergence analysis of particle swarm optimization using stochastic Lyapunov functions and quantifier elimination

This paper adds to the discussion about theoretical aspects of particle ...
research
03/01/2018

Kernel Embedding Approaches to Orbit Determination of Spacecraft Clusters

This paper presents a novel formulation and solution of orbit determinat...
research
01/19/2017

Optimized Spatial Partitioning via Minimal Swarm Intelligence

Optimized spatial partitioning algorithms are the corner stone of many s...
research
02/15/2019

Nonlinear Negotiation Approaches for Complex-Network Optimization: A Study Inspired by Wi-Fi Channel Assignment

At the present time, Wi-Fi networks are everywhere. They operate in unli...

Please sign up or login with your details

Forgot password? Click here to reset