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INDIA'S SPACE STATION

Bharatiya Antariksh Station (BAS): India's Space Station

India's planned modular space station will expand the country's human spaceflight, microgravity research and long-duration space exploration capabilities.

3D concept render of India's planned Bharatiya Antariksh Station with multiple modules and solar panels

3D concept visualization of the planned Bharatiya Antariksh Station (BAS).

Planned Mass~52 tonnes
Planned Orbit400–450 km
Planned Modules5 Modules
Nominal Crew3–4 Astronauts
Max Short Crew6 Astronauts
Target Completion2035 Target
At a Glance · Quick Answer

What is the Bharatiya Antariksh Station?

“The Bharatiya Antariksh Station (BAS) is India's planned modular space station, intended to be developed and operated by ISRO. The station is planned as a multi-module platform in low Earth orbit for human spaceflight, scientific research, technology demonstrations and future space exploration.”
• Operator: ISRO (Indian Space Research Organisation)• Target First Launch: 2028 (BAS-01)• Status: Under Active Development
Program Overview

What Is the Bharatiya Antariksh Station?

India's Permanent Orbital Outpost

The Bharatiya Antariksh Station (BAS) represents India's next giant leap in space exploration. Serving as a dedicated modular platform in low Earth orbit (LEO), BAS will provide ISRO with continuous human presence capability in space.

Building upon the foundation laid by the Gaganyaan human spaceflight programme, BAS will transition India from initial orbital demonstration flights to sustained long-duration space habitat operations.

Gateway to Microgravity & Lunar Exploration

BAS will serve as an advanced microgravity laboratory for space medicine, biology, materials synthesis, and fundamental physics. It will allow Indian scientists to perform experiments impossible on Earth.

Furthermore, the technologies validated on BAS—such as closed-loop life support, automated docking, fuel cell power systems, and radiation shielding—are essential stepping stones for India's targeted crewed lunar landing by 2040.

Technical Data Sheet

Technical Specifications

Planned architectural metrics for the full 5-module Bharatiya Antariksh Station as compiled from official ISRO roadmaps and government disclosures.

Specification ParameterPlanned Value / Configuration
Total Mass~52 tonnes (planned combined mass)
Station Dimensions27 m × 20 m (planned overall envelope)
Pressurized Volume~265 m³ (estimated total pressurized volume)
Habitable Volume~105 m³ (estimated total habitable volume)
Nominal Crew Capacity3–4 astronauts (long-duration stays of 3–6 months)
Maximum Short-Duration Crew6 astronauts (during crew rotation operations)
Orbit TypeCircular Low Earth Orbit (LEO)
Orbital Altitude400 km – 450 km (planned operational altitude)
Orbital Inclination~51.5° – 51.6°
Total Modules5 main modules (BAS-01 to BAS-05)
Node Structure2 connection nodes
Docking CapabilitiesCrew & cargo craft docking provisions (BDS)
Berthing Mechanism4 Common Berthing Mechanism (CBM) ports in Module 5
Robotic SystemsManipulator robotic arm, free-flying inspection probes & Vyommitra humanoid support
Observation PortCupola module with multi-viewport observation windows
Extravehicular Activity (EVA)Designed airlock systems supporting astronaut spacewalks
Program Timeline

Development Timeline

Milestones tracking the conceptualization, government approvals, phase-1 module development, and operational targets for BAS.

2019Historical

Initial Space Station Announcement

ISRO leadership publicly presented the conceptual features and preliminary intent for a proposed Indian space station.

2023Historical

Human Spaceflight Roadmap Integration

ISRO unveiled the comprehensive long-term roadmap directly connecting Gaganyaan orbital missions with the future space station architecture.

18 September 2024Approved Milestone

Union Cabinet Official Approval

The Union Cabinet of India officially approved the development of the initial BAS-1 module as part of the expanded Gaganyaan programme budget.

2024Historical

Phase-1 Detailed Engineering Completed

Detailed design work for the BAS-1 primary structure was completed, confirming compatibility for launch on the LVM3 rocket.

2025Historical

National Space Day Model Unveiling

ISRO publicly unveiled a detailed 1:1 scale engineering model of the BAS-01 module during National Space Day celebrations.

January 2026Active Step

Commercial Industry Participation Call

ISRO's Vikram Sarabhai Space Centre (VSSC) invited Indian commercial aerospace manufacturers to begin hardware construction related to BAS-01.

2028 (Target)Future Target

BAS-01 Base Module Launch Target

BAS-01 (Base Module) is presently targeted for launch into low Earth orbit aboard an LVM3 rocket to begin orbital operations.

2035 (Target)Future Target

Full Station Completion Target

Targeted operational completion of the complete 5-module Bharatiya Antariksh Station complex according to ISRO's baseline roadmap.

Modular Architecture

Bharatiya Antariksh Station Modules

The station consists of five specialized modular components launched individually and docked in orbit.

BAS-01Phase 1 Initial Launch

Base Module

Envelope: 3.8 m diameter × 8.00 m
Listed Mass: 9,186 kg
Launch Vehicle: LVM3

Initial testbed, primary life support systems (ECLSS), crew quarters and initial orbital operational control.

BAS-02Core Phase

Core Module

Envelope: 3.8 m diameter × 9.25 m
Listed Mass: 10,033 kg
Launch Vehicle: LVM3

Central structural hub connecting primary station corridors, power management, and navigation routing.

BAS-03Science Phase

Science Research Module

Envelope: 3.8 m diameter × 9.25 m
Listed Mass: 10,896 kg
Launch Vehicle: LVM3-SC (Semi-Cryogenic)

Dedicated microgravity laboratory for scientific experiments, space biology, and material science racks.

BAS-04Tech Phase

Laboratory Module

Envelope: 3.8 m diameter × 9.25 m
Listed Mass: 10,646 kg
Launch Vehicle: LVM3-SC (Semi-Cryogenic)

Advanced technological laboratory for in-space manufacturing, robotics control, and physics payloads.

BAS-05Berthing Phase

Common Berthing Module (CBM)

Envelope: 3.8 m diameter × 9.25 m
Listed Mass: 10,969 kg
Launch Vehicle: LVM3-SC (Semi-Cryogenic)

Houses 4 Common Berthing Mechanism ports for visiting cargo spacecraft, commercial logistics, and expansion nodes.

ROBOTICSStation Subsystem

Robotic Manipulator Arm

A robotic manipulator arm is planned to assist with orbital assembly, payload transfers, exterior inspection, and autonomous berthing support. Prototype robotic arm systems were tested during ISRO's POEM-4 mission.

Phase-1 Cornerstone

BAS-01: India's First Space Station Module

BAS-01 is planned as India's inaugural space station module. It will function as a vital technology testbed to demonstrate critical hardware required for long-duration human space habitation.

Key Subsystems & Mechanisms

  • ECLSS: Environmental Control & Life Support System for oxygen generation and carbon dioxide scrubbing.
  • Bharat Docking System (BDS): Automated active-passive docking ring for Gaganyaan crew spacecraft.
  • Bharat Berthing Mechanism (BBM): Heavy-load mechanical berthing latches for future modules.
  • Automated Hatch System: Pressure-sealed hatch doors for intra-vehicular astronaut passage.

BAS-01 Fast Facts

Dimensions:~3.8 m diameter × 8.0 m length
Listed Mass:9,186 kg (~10 tonnes scale class)
Target Launch:Late 2028
Launch Rocket:LVM3 (Launch Vehicle Mark-3)
Approved Budget:~₹1,763 crore (Union Cabinet)
Orbital Assembly Sequence

How Will India Build the Space Station?

01

Initial Base Launch

Launch BAS-01 Base Module using LVM3 into a ~400 km circular low Earth orbit.

02

Orbital Insertion

Deploy initial solar arrays, perform system checks, and establish baseline communications.

03

Module Launches

Sequentially launch BAS-02 through BAS-05 modules using heavy-lift LVM3 and LVM3-SC variants.

04

Docking & Berthing

Perform autonomous orbital rendezvous, BDS docking, and BBM berthing procedures.

05

Structural Integration

Connect electrical power distribution, thermal loops, and ECLSS corridors between modules.

06

Power Array Deployment

Deploy primary 100 kW-class solar arrays and fuel cell energy storage systems.

07

Full Crew Operations

Enable progressively longer-duration 3–6 month crewed astronaut missions aboard the completed station.

Rendezvous & Docking

Bharatiya Antariksh Station Docking Technology

Autonomous docking is critical for space station assembly and crew transfer. ISRO has developed indigenous docking and berthing systems proven through technological demonstrations.

Bharat Docking System (BDS)

Androgynous docking mechanism designed for Gaganyaan crew spacecraft soft and hard docking.

Bharat Berthing Mechanism (BBM)

Heavy-load mechanical latching system used for structural joining of BAS expansion modules.

SpaDeX Technology Demonstration

ISRO's Space Docking Experiment (SpaDeX) demonstrated autonomous twin-satellite rendezvous and docking in orbit.

Autonomous Docking Architecture

BAS features standardized Common Berthing Mechanism (CBM) ports in Module 5 allowing both domestic Gaganyaan spacecraft and international visiting cargo vehicles to dock seamlessly.

CBM Ports: 4 Reserved Berthing Connections
Energy Architecture

How Will BAS Generate Power?

Hybrid Solar & Fuel Cell System

BAS will utilize a dual power architecture combining high-efficiency solar arrays during orbital daylight with Polymer Electrolyte Membrane Fuel Cell Power Systems (FCPS) for eclipse periods.

ISRO successfully flight-tested its 100-watt class Polymer Electrolyte Membrane Fuel Cell aboard the POEM-3 mission on PSLV-C58. The reaction of hydrogen and oxygen produces electricity with pure drinkable water as a byproduct for the astronauts.

Solar Array Target:100 kW-Class Photovoltaic Arrays
Energy Storage:Silicon-Graphite Energy Cells
Fuel Cell Infographic

Clean Energy & Water Generation

Hydrogen (H₂) + Oxygen (O₂)
↓ Electro-Chemical Reaction
Electricity + Pure Water (H₂O)

Proven on POEM-3, fuel cells eliminate heavy battery overhead while supplying potable water for life support.

Human Habitat Operations

Astronauts on the Bharatiya Antariksh Station

NOMINAL CREW

3–4 Astronauts

Standard expedition crew performing routine science experiments and maintenance for 3 to 6 month missions.

MAX SHORT CREW

6 Astronauts

Short-duration capacity during crew handovers, visiting scientist missions, or joint operations.

MISSION DURATION

3 to 6 Months

Designed long-stay orbital duration for monitoring human health, microgravity adaptation, and psychological resilience.

Scientific Mission

What Will India Use BAS For?

Microgravity Research

Conduct experiments in fluid physics, protein crystallization, and semiconductor crystal growth impossible in Earth gravity.

Space Biotechnology

Study cell behavior, tissue engineering, and pharmaceutical drug development in long-duration microgravity.

Space Medicine & Human Physiology

Monitor bone density loss, cardiovascular changes, and radiation effects to safeguard gaganauts.

In-Space Manufacturing

Develop precision alloy fabrication, 3D bioprinting, and optical fiber drawing techniques.

Earth & Astronomical Observation

Utilize cupola viewports and external payload mounts for environmental monitoring and astronomical sensing.

Future Lunar Exploration Prep

Validate ECLSS life support systems, extravehicular suits, and closed-loop recycling required for 2040 Moon missions.

Global Partnerships

International Collaboration

While BAS is an indigenous Indian space station program, ISRO is actively fostering international partnerships for mutual research, astronaut training, and docking standards compatibility.

ISRO – ESA Cooperation

Under the ISRO–European Space Agency Joint Statement of Intent, both agencies explore cooperation in low Earth orbit operations, docking compatibility, astronaut training, analog missions, and potential European research payloads on BAS.

Roscosmos & Global Ties

India maintains interest in strategic space cooperation with Russia (Roscosmos) for life support systems and cosmonaut training expertise, as well as interoperable docking standards for visiting international commercial craft.

Comparative Benchmark

Bharatiya Antariksh Station vs International Space Station

Feature MetricBharatiya Antariksh Station (BAS)International Space Station (ISS)
Operating OrganizationIndia / ISROInternational Partnership (NASA, Roscosmos, ESA, JAXA, CSA)
Planned Orbit~400–450 km planned (LEO)~418–422 km (51.6° inclination)
Module Configuration5 planned modular structures16 pressurized operational modules
Total Station Mass~52 tonnes planned mass~450 tonnes total mass
Nominal Crew Size3–4 astronauts7 expedition astronauts
Primary Mission FocusHuman spaceflight, research, tech demo & lunar prepInternational human spaceflight & microgravity science
Program StatusUnder active development (Target 2028-2035)Operational legacy station (1998–present)
Frequently Asked Questions

Bharatiya Antariksh Station FAQs

Direct answers to common questions about India's planned space station for search engines and AI assistants.

Q1.What is the Bharatiya Antariksh Station?

The Bharatiya Antariksh Station (BAS) is India's planned modular space station, intended to be developed and operated by ISRO. The station is planned as a multi-module platform in low Earth orbit for human spaceflight, scientific research, technology demonstrations and future space exploration.

Q2.When will India's space station launch?

The initial module, BAS-01 (Base Module), is presently targeted for launch in late 2028 aboard ISRO's LVM3 rocket, as part of the expanded Gaganyaan human spaceflight programme.

Q3.When will the Bharatiya Antariksh Station be completed?

The full 5-module Bharatiya Antariksh Station is targeted for operational completion by 2035 according to ISRO and government roadmaps.

Q4.How many astronauts can the Indian space station hold?

BAS is designed for a nominal crew of 3 to 4 astronauts for long-duration missions (3 to 6 months), with a maximum short-duration crew capacity of up to 6 astronauts during crew rotation or joint operations.

Q5.How big will the Indian space station be?

The fully assembled Bharatiya Antariksh Station is planned to have overall dimensions of approximately 27 m × 20 m, with an estimated pressurized volume of ~265 m³ and habitable volume of ~105 m³.

Q6.How much will the Bharatiya Antariksh Station weigh?

The Bharatiya Antariksh Station has a planned total mass of approximately 52 tonnes across its 5 combined modules.

Q7.How high will the Indian space station orbit?

BAS is planned to operate in a circular low Earth orbit (LEO) at an orbital altitude of 400 km to 450 km with an inclination of approximately 51.5° to 51.6°.

Q8.How many modules will BAS have?

The complete Bharatiya Antariksh Station is planned to feature 5 main modules: BAS-01 (Base Module), BAS-02 (Core Module), BAS-03 (Science Module), BAS-04 (Laboratory Module), and BAS-05 (Common Berthing Module).

Q9.What is BAS-01?

BAS-01 is the initial phase-1 base module of the space station. Weighing ~9,186 kg with a 3.8 m × 8.0 m envelope, it serves as a primary technology testbed for environmental control, life support (ECLSS), crew quarters, and automated docking mechanisms.

Q10.What rocket will launch BAS-01?

BAS-01 is planned to be launched into orbit using ISRO's heavy-lift launch vehicle, the LVM3 (Launch Vehicle Mark-3).

Q11.Will astronauts live on the Indian space station?

Yes, Indian gaganauts and international astronauts are planned to live and work aboard BAS for orbital stays ranging from several weeks up to 3 to 6 months.

Q12.What is the purpose of the Bharatiya Antariksh Station?

BAS will serve as India's orbital outpost for microgravity research, space biotechnology, material sciences, human spaceflight physiology, space robotics, and technology preparation for future lunar exploration.

Q13.Is the Bharatiya Antariksh Station operational?

No. The Bharatiya Antariksh Station is a planned future space station under active research, design, and development by ISRO, with the initial BAS-01 module targeted for launch in 2028.

Q14.Is the BAS design final?

The overall architectural parameters and module configurations represent ISRO's baseline roadmap. Detailed designs continue to evolve through engineering reviews and commercial industry participation.

Sources & References

Information on this page is compiled from official announcements by the Indian Space Research Organisation (ISRO), Union Cabinet approvals (September 2024), Vikram Sarabhai Space Centre (VSSC) industry notifications, and public parliamentary disclosures.

Last updated: August 17, 2026 · Compiled by Indian Space Hub Editorial Team