Journal of Space Science and Technology

Journal of Space Science and Technology

Journal of Space Science and Technology is an open access double-blind peer-reviewed quarterly journal, owned, managed and published by IAS since 2008. The journal publishes original and high-quality peer-reviewed papers containing significant results relevant to all aspects of Space System Engineering, Space Operation and Applications, Commerce, Management, Space Law, Space Sciences and Exploration and Investigating Space Radiation.


Journal Title

Journal of Space Science and Technology

P-ISSN

2008-4560

E-ISSN

2423-4516

Frequency

Quarterly

Editor-in-Chief

Reza Ebrahimi, Ph.D.

Language 

Persian with English Abstracts

Plagiarism Checker

Hamanandjo, iThenticate

Peer Review Policy

Double-blind

Article Processing Charges

No APC (Free)

Average Review Time

3 Months

Acceptance Rate

30%

Owner & Publisher

ARI, IAS

The Journal of Space Science and Technology is now accepting original research papers in English also featuring a swift review prosses


          

 

Current Issue: Volume 19, Issue 2, 2026, Pages 1-69 

Keywords Cloud

  • Attitude control
  • satellite
  • Genetic Algorithm
  • optimization
  • Space Radiation
  • Uncertainty
  • Reaction wheel
  • Conceptual design
  • system design
  • Remote Sensing
  • Microgravity
  • numerical simulation
  • Satellite attitude control
  • Kalman Filter
  • Simulation
  • Spacecraft
  • Launch Vehicle
  • Optimal control
  • Multidisciplinary design optimization
  • GPS
  • Sounding rocket
  • Swirl injector
  • Reliability
  • Satellite Constellations
  • Optimal guidance
  • Attitude determination
  • Reaction wheels
  • CubeSat
  • Pitch program
  • Air bearing
  • Thruster
  • Monopropellant thruster
  • Guidance law
  • Nozzle
  • Extended Kalman Filter
  • guidance
  • Sensitivity analysis
  • remote sensing satellite
  • TLE
  • Star tracker
  • Sliding mode control
  • fault detection
  • Liquid Propellant Engine
  • Finite Element
  • heat transfer
  • Saturation
  • star sensor
  • LEO satellite
  • INS
  • Outer space
  • Helmholtz coil
  • flexible spacecraft
  • Inertial Navigation System
  • Low thrust
  • Stability Analysis
  • attitude estimation
  • Proportional navigation
  • Aerodynamic heating
  • atomization
  • Geostationary orbit
  • Microstructure
  • manned spacecraft
  • Sovereignty
  • Magnetorquer
  • Numerical analysis
  • Terminal sliding mode
  • Radiation
  • time series
  • Reentry
  • Hypersonic Flow
  • Star catalog
  • Space Capsule
  • Neural Network
  • Spray cone
  • Ground station
  • GEO satellite
  • Transverse flow
  • Calibration
  • Inertial Navigation
  • Modeling
  • Fuzzy logic
  • Solar Cell
  • Displacement damage
  • spacecraft formation flying
  • Magnetometer
  • LQR
  • vibration
  • Machine Learning
  • launcher
  • Composite
  • Catalyst
  • Design optimization
  • Sliding mode
  • State dependent riccati equation
  • image processing
  • Space
  • Hydrogen peroxide
  • Microsatellite
  • Robust Control
  • Electrical power subsystem
  • cryogenic
  • Artificial Neural Networks
  • Space law
  • heat flux
  • Artificial Neural Network
  • Orbital maneuver
  • design algorithm
  • IMU
  • orbital mechanics
  • decomposition chamber
  • Solid Rocket Motor
  • EKF
  • Responsibility
  • Orbit Determination
  • Radiation damage
  • Capillary injector
  • growth
  • Fault Isolation
  • Starlink
  • Combustion chamber
  • design requirements
  • Numerical modeling
  • simulator
  • Stereo
  • Plasma antenna
  • Quantitative feedback theory
  • Nanosatellite
  • UDF
  • Required velocity
  • Cost
  • GEANT4
  • Monopropellant
  • Magnetic field
  • CanSat
  • Forced Convection
  • Thrust vector control
  • Satellite subsystems
  • Magnetic attitude control
  • injection
  • LEO Orbit
  • imaging payload
  • Turbulent Flow
  • breast cancer
  • Cold gas thruster
  • solar array
  • thermal control
  • Antenna Pointing Mechanism
  • Reconfiguration
  • Uncertainty and actuator saturation
  • Shooting Method
  • Space Traffic Management
  • Position determination
  • Gyro calibration
  • LEO
  • STK software
  • optimal trajectory
  • Model predictive Control
  • separation system
  • Collaborative design
  • Bipropellant propulsion system
  • prediction
  • Propulsion System
  • State control
  • Positioning System
  • Sloshing
  • Space weather
  • Sun simulator
  • Thrust
  • integration
  • Initial alignment
  • Primary breakup
  • Asteroid Apophis
  • TEC
  • redundancy
  • Deep Learning
  • Launch abort system
  • Non-interfering architecture
  • gimbal control moment gyro
  • Flexible satellite
  • Positioning
  • Space industry
  • Adaptive attitude control
  • Communication satellite
  • Pulse-Width Pulse-Frequency Modulator
  • Fault-tolerant control
  • Control Allocation
  • Attitude determination and control subsystem
  • linear Instability
  • Recursive least squares
  • Satellite remote sensing
  • HZETRN
  • space launch vehicle
  • Optimized environment
  • upper stage
  • space structures
  • payload
  • Differential flatness
  • Visual Navigation
  • Integrated Navigation
  • implicit guidance