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Related papers: Automated Design of CubeSats and Small Spacecrafts

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Space systems miniaturization has been increasingly popular for the past decades, with over 1600 CubeSats and 300 sub-CubeSat sized spacecraft estimated to have been launched since 1998. This trend towards decreasing size enables the…

Instrumentation and Methods for Astrophysics · Physics 2022-10-20 Konstantinos Kanavouras , Andreas Makoto Hein , Maanasa Sachidanand

CubeSats have the potential to expand astrophysical discovery space, complementing ground-based electromagnetic and gravitational-wave observatories. The CubeSat design specifications help streamline delivery of instrument payloads to…

Instrumentation and Methods for Astrophysics · Physics 2019-12-03 Ewan S. Douglas , Kerri L. Cahoy , Mary Knapp , Rachel E. Morgan

Since the early 2000' years, the CubeSats have been growing and getting more and more "space" in the Space industry. Their short development schedule, low cost equipment and piggyback launches create a new way to access the space, provide…

Software Engineering · Computer Science 2021-02-25 Carlos Leandro Gomes Batista , Fátima Mattiello-Francisco

Given the increasing number of space-related applications, research in the emerging space industry is becoming more and more attractive. One compelling area of current space research is the design of miniaturized satellites, known as…

Signal Processing · Electrical Eng. & Systems 2020-04-24 Nasir Saeed , Ahmed Elzanaty , Heba Almorad , Hayssam Dahrouj , Tareq Y. Al-Naffouri , Mohamed-Slim Alouini

Recent advances in 3D printing and manufacturing of miniaturized robotic hardware and computing are paving the way to build inexpensive and disposable robots. This will have a large impact on several applications including scientific…

Robotics · Computer Science 2019-02-18 Luca Carlone , Carlo Pinciroli

After many years of flying in space primarily for educational purposes, CubeSats - tiny satellites with form factors corresponding to arrangements of "1U" units, or cubes, each 10 cm on a side - have come into their own as valuable…

Instrumentation and Methods for Astrophysics · Physics 2023-04-05 Peter F. Bloser , David Murphy , Fabrizio Fiore , Jeremy Perkins

CubeSats have become a meaningful option for deep-space exploration, but their autonomy must be increased to maximize the science return while limiting the complexity in operations. We present here a solution for an autonomous orbit…

Instrumentation and Methods for Astrophysics · Physics 2021-04-21 Boris Segret , Benoît Mosser

Recent advances in miniaturization and commercial availability of critical satellite subsystems and detector technology have made small satellites (SmallSats, including CubeSats) an attractive, low-cost potential solution for space weather…

Instrumentation and Methods for Astrophysics · Physics 2022-02-02 Amir Caspi , M. Barthelemy , C. D. Bussy-Virat , I. J. Cohen , C. E. DeForest , D. R. Jackson , A. Vourlidas , T. Nieves-Chinchilla

Computer simulations serve as powerful tools for scientists and engineers to gain insights into complex systems. Less costly than physical experiments, computer experiments sometimes involve large number of trials. Conventional design…

Methodology · Statistics 2025-06-06 Xu He , Junpeng Gong , Zhaohui Li

This paper describes the process and challenges behind the design and development of a micro-gravity enabling aerial robot. The vehicle, designed to provide at minimum 4 seconds of micro-gravity at an accuracy of .001 g's, is designed with…

Robotics · Computer Science 2016-11-24 Juan-Pablo Afman , John Franklin , Mark L. Mote , Thomas Gurriet , Eric Feron

CubeSats are small satellites built in standard sizes and form factors, which have been growing in popularity but have thus far been largely ignored within the field of astronomy. When deployed as space-based telescopes, they enable science…

Instrumentation and Methods for Astrophysics · Physics 2018-09-05 Evgenya L. Shkolnik

CubeSats are small satellites used for scientific experiments because they cost less than full sized satellites. Each CubeSat uses an on-board computer. The on-board computer performs sensor measurements, data processing, and CubeSat…

Space Physics · Physics 2022-11-07 Brosnan Yuen , Mihai Sima

Space-filling designs are crucial for efficient computer experiments, enabling accurate surrogate modeling and uncertainty quantification in many scientific and engineering applications, such as digital twin systems and cyber-physical…

Methodology · Statistics 2025-08-06 Xinwei Deng , Lulu Kang , C. Devon Lin

In this paper, a practical approach to the trajectory design for asteroid exploration missions with CubeSats is presented. When applied trajectories are sought, operative concerns and uncertainties affecting the spacecraft dynamics must be…

Dynamical Systems · Mathematics 2022-07-13 Claudio Bottiglieri , Felice Piccolo , Carmine Giordano , Francesco Topputo

Space mission design places a premium on cost and operational efficiency. The search for new science and life beyond Earth calls for spacecraft that can deliver scientific payloads to geologically rich yet hazardous landing sites. At the…

Optimization and Control · Mathematics 2021-08-25 Danylo Malyuta , Yue Yu , Purnanand Elango , Behcet Acikmese

Building domain-specific accelerators for autonomous unmanned aerial vehicles (UAVs) is challenging due to a lack of systematic methodology for designing onboard compute. Balancing a computing system for a UAV requires considering both the…

This study proposes a new automated strategy for designing and optimizing three-dimensional interplanetary low-thrust (LT) trajectories. The method formulates the design as a hybrid optimal control problem and solves it using a two-step…

Optimization and Control · Mathematics 2023-09-22 Burhani M. Burhani , Elena Fantino , Roberto Flores , Manuel Sanjurjo-Rivo

This paper develops a robust optimization based method to design orbits on which the sensory perception of the desired physical quantities are maximized. It also demonstrates how to incorporate various constraints imposed by many spacecraft…

Optimization and Control · Mathematics 2013-12-30 Hamidreza Nourzadeh , John E. McInroy

The traditional multicopter design method usually requires a long iterative process to find the optimal design based on given performance requirements. The method is uneconomical and inefficient. In this paper, a practical method is…

Systems and Control · Electrical Eng. & Systems 2019-08-20 Xunhua Dai , Quan Quan , Kai-Yuan Cai

This paper presents the design of a small aerial robot for inhabited microgravity environments, such as orbiting space stations (e.g., ISS). In particular, we target a fleet of robots, called Space CoBots, for collaborative tasks with…

Robotics · Computer Science 2016-05-03 Pedro Roque , Rodrigo Ventura
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