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Updates projects (present & past) and formatted the past coleads section.
 
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[[File: BalloonSelfie.png|left|frame|A photo of the edge of space, taken by [[SSI-23]], Gemini]]
[[File: BalloonSelfie.png|left|frame|A photo of the edge of space, taken by [[SSI-23]], Gemini]]
The Balloons team constructs and launches high altitude balloons! (HABs) We currently launch primarily Latex balloons, but are also experimenting with Zero Pressure Balloons (ZPBs). To date, the team has launched and recovered 140+ high altitude balloons to as high as 120,000 feet with active altitude controls, satellite communication, and scientific payloads. We have launched a balloon all the way across the Atlantic Ocean from California and also a balloon that has circumnavigated the globe.
The Balloons team constructs and launches High Altitude Balloons (HABs)! We predominantly launch Latex balloons, and have experimented with zero-pressure balloons (ZPBs) and cellophane circumnavigators in the past. To date, the Balloons team has launched and recovered 140+ HABs as high as 120,000 feet with active altitude controls, satellite communication, and scientific payloads. We have launched a balloon crossing the Atlantic Ocean from California and also balloons that have circumnavigated the globe!


{{nowrap|The current team co-leads are {{Leadership|Balloons=true}}}}  
{{nowrap|The current team co-leads are {{Leadership|Balloons=true}}}}  


Current projects aim to increase the possibilities that can be achieved using HABs, pushing the ballooning frontier deep into the 21st century. Our 1st project is GRASS, which aims to fly a glacial sounding radar over the ice sheets of Greenland, collaborating with Professor Dustin Schroeder's Glacial Radiology lab, to understand how surface clutter off ice sheets differs with altitude. Our 2nd main project, CLIPPER, aims to develop and fly a glider payload that can be returned to the launch location or another ideal location. This will solve the significant ballooning problem of having to find and retrieve payloads, often from unideal locations; it will also enable us to launch from new locations.  
The Balloons team has two ongoing projects: the Latex Experimental series, and the Glacial Radio And Stratospheric Sensing (GRASS) project in partnership with [https://www.radioglaciology.com/ the Radio Glaciology Lab]. Latex Experimental is an all-encompassing series where we test & verify new technologies (sensing, comms, recovery), fly payloads for [[:Category:Teams|our fellow SSI teams]], and test innovative payload designs. GRASS is a research project targeting Greenland-based testing to measure how RF power gets scattered off the surface of glaciers, along with some other open questions about airborne ice-penetrating radar.
 
In the coming year (2026-27), the Balloons team plans to add the following projects: 
 
* CLIPPER, a glider payload that can be returned to the launch location or another ideal location. This will solve the significant ballooning problem of having to find and retrieve payloads, often from unideal locations; it will also enable us to launch from new locations.
* Pharmaceuticals in Space, a microgravity crystal synthesis project in partnership with the [[:Category:M.A.R.S|M.A.R.S.]] team. This project will demonstrate the viability and chemical significance of synthesising pharmaceutical products in microgravity, which is hypothesised to create more uniform crystal structures.


Balloon payloads are launched with state-of-the-art equipment constantly re-envisioned by the team. Previous payloads include altitude control mechanics using a gas venting valve and ballast dispenser (ValBal), as well as a custom flight control system, two-way satellite communications, an intelligent altitude control algorithm, autonomous guided payload recovery and more.   
Balloon payloads are launched with state-of-the-art equipment constantly re-envisioned by the team. Previous payloads include altitude control mechanics using a gas venting valve and ballast dispenser (ValBal), as well as a custom flight control system, two-way satellite communications, an intelligent altitude control algorithm, autonomous guided payload recovery and more.   


The Balloons Team Faculty Advisor is Dr. John Pauly (EE).  
The Balloons team Faculty Advisor is Dr. John Pauly, Department of Electrical Engineering.  
 
Our past co-leads:
 
* 2025-26: {{slack-user
 
| sunet-id =davidzh
| display-name = David Zhou
 
}} and {{slack-user


The co-leads in 2022-23 were {{slack-user
| sunet-id =quyenvo
| display-name = Quyen Vo
 
}}.
* 2024-25: {{slack-user|sunet-id=miczheng|display-name=Michelle Zheng}} and {{slack-user|sunet-id=amleung|display-name=Amber Leung}}.
* 2022-23: {{slack-user


| sunet-id =rsanda  
| sunet-id =rsanda  
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| display-name = Jack Bernardo
| display-name = Jack Bernardo


}}. The co-leads in 2021-22 were {{slack-user|sunet-id = matthtan|display-name=Matthew Tan}} and {{slack-user|sunet-id=jteoh|display-name=Janice Teoh}}. The co-leads in 2020-21 were Aditeya Shuka ({{slack-user|display-name=Adi}}) and Sathya Edamadaka  ({{slack-user|display-name=sathya}}). The co-leads in 2019-20 were Sydney Marler ({{slack-user|display-name=smarler}}) and Jason Kurohara ({{slack-user|display-name=jason kurohara}}).
}}.
 
* 2021-22: {{slack-user|sunet-id = matthtan|display-name=Matthew Tan}} and {{slack-user|sunet-id=jteoh|display-name=Janice Teoh}}.
The core of the Balloons team is a set of long-term technical projects. Current projects include:<br/>
* 2020-21: Aditeya Shuka ({{slack-user|display-name=Adi}}) and Sathya Edamadaka  ({{slack-user|display-name=sathya}}).
[[Cycloon]], which aims to harness altitude control technology and the unique advantages of a balloon platform to study tropical cyclogenesis.<br/>
* 2019-20 were Sydney Marler ({{slack-user|display-name=smarler}}) and Jason Kurohara ({{slack-user|display-name=jason kurohara}}).
[[HABSIM]], a GEFS-based trajectory prediction server and an associated Python package enabling predictions and optimizations on custom profiles. <br/>
[[Spaceshot]], which aims to launch a rocket off a high-altitude balloon to reach space.<br/>
[[HABMC]], the balloons team mission-control software, a powerful web-app that provides real-time data, analytics, and controls of balloon flights.<br/>
[[Balloonerang]], which aims to build a payload which autonomously glides to a predetermined recovery site.<br/>
 


Previous projects include: <br/>
Previous projects include:<br />
'''ValBal''', a long-endurance, low-cost latex balloon altitude-maintenance platform that holds multiple world records for endurance, and has flown as far as Morocco.<br/>
[[Cycloon]], which aims to harness altitude control technology and the unique advantages of a balloon platform to study tropical cyclogenesis.<br />
'''HABEES''', the balloons project team responsible for all balloons standard-profile electronics, RF, and flight software systems.<br/>
[[HABSIM]], a GEFS-based trajectory prediction server and an associated Python package enabling predictions and optimizations on custom profiles. <br />
'''habhive''', the balloons mechanical-engineering project team, responsible for development of payload structures & novel mechanical projects to be flown on balloons.<br/>
[[Spaceshot]], which aims to launch a rocket off a high-altitude balloon to reach space.<br />
[[HABMC]], the balloons team mission-control software, a powerful web-app that provides real-time data, analytics, and controls of balloon flights.<br />
[[Balloonerang]], which aims to build a payload which autonomously glides to a predetermined recovery site.<br />
'''ValBal''', a long-endurance, low-cost latex balloon altitude-maintenance platform that holds multiple world records for endurance, and has flown as far as Morocco.<br />
'''HABEES''', the balloons project team responsible for all balloons standard-profile electronics, RF, and flight software systems.<br />
'''habhive''', the balloons mechanical-engineering project team, responsible for development of payload structures & novel mechanical projects to be flown on balloons.<br />


The balloons team is committed to openness and diversity in projects; project teams serve to facilitate member interests and novel new ideas and propositions; talk to the balloon co-leads or the relevant project leads if you have an awesome idea you'd like to try out!<br/>
The balloons team is committed to openness and diversity in projects; project teams serve to facilitate member interests and novel new ideas and propositions; talk to the balloon co-leads or the relevant project leads if you have an awesome idea you'd like to try out!<br/>

Latest revision as of 12:50, 13 September 2026

A photo of the edge of space, taken by SSI-23, Gemini

The Balloons team constructs and launches High Altitude Balloons (HABs)! We predominantly launch Latex balloons, and have experimented with zero-pressure balloons (ZPBs) and cellophane circumnavigators in the past. To date, the Balloons team has launched and recovered 140+ HABs as high as 120,000 feet with active altitude controls, satellite communication, and scientific payloads. We have launched a balloon crossing the Atlantic Ocean from California and also balloons that have circumnavigated the globe!

The current team co-leads are

@Kai Song  and @Aditya Iyer 

The Balloons team has two ongoing projects: the Latex Experimental series, and the Glacial Radio And Stratospheric Sensing (GRASS) project in partnership with the Radio Glaciology Lab. Latex Experimental is an all-encompassing series where we test & verify new technologies (sensing, comms, recovery), fly payloads for our fellow SSI teams, and test innovative payload designs. GRASS is a research project targeting Greenland-based testing to measure how RF power gets scattered off the surface of glaciers, along with some other open questions about airborne ice-penetrating radar.

In the coming year (2026-27), the Balloons team plans to add the following projects:

  • CLIPPER, a glider payload that can be returned to the launch location or another ideal location. This will solve the significant ballooning problem of having to find and retrieve payloads, often from unideal locations; it will also enable us to launch from new locations.
  • Pharmaceuticals in Space, a microgravity crystal synthesis project in partnership with the M.A.R.S. team. This project will demonstrate the viability and chemical significance of synthesising pharmaceutical products in microgravity, which is hypothesised to create more uniform crystal structures.

Balloon payloads are launched with state-of-the-art equipment constantly re-envisioned by the team. Previous payloads include altitude control mechanics using a gas venting valve and ballast dispenser (ValBal), as well as a custom flight control system, two-way satellite communications, an intelligent altitude control algorithm, autonomous guided payload recovery and more.

The Balloons team Faculty Advisor is Dr. John Pauly, Department of Electrical Engineering.

Our past co-leads:

Previous projects include:
Cycloon, which aims to harness altitude control technology and the unique advantages of a balloon platform to study tropical cyclogenesis.
HABSIM, a GEFS-based trajectory prediction server and an associated Python package enabling predictions and optimizations on custom profiles.
Spaceshot, which aims to launch a rocket off a high-altitude balloon to reach space.
HABMC, the balloons team mission-control software, a powerful web-app that provides real-time data, analytics, and controls of balloon flights.
Balloonerang, which aims to build a payload which autonomously glides to a predetermined recovery site.
ValBal, a long-endurance, low-cost latex balloon altitude-maintenance platform that holds multiple world records for endurance, and has flown as far as Morocco.
HABEES, the balloons project team responsible for all balloons standard-profile electronics, RF, and flight software systems.
habhive, the balloons mechanical-engineering project team, responsible for development of payload structures & novel mechanical projects to be flown on balloons.

The balloons team is committed to openness and diversity in projects; project teams serve to facilitate member interests and novel new ideas and propositions; talk to the balloon co-leads or the relevant project leads if you have an awesome idea you'd like to try out!



Balloon Launches
2014-15 SSI-19202122
2015-16 SSI-23(a) • 2425262728293031323334353637383940414243
2016-17 444546474849505152
2017-18
2018-19 8386879091
2019-20 929397
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