Showing posts with label balloon launch. Show all posts
Showing posts with label balloon launch. Show all posts

Thursday, February 1, 2024

30 Days: Weather Balloons from NY Capital Region

 


After thirty full days of monitoring the National Weather Service balloons launched from the capital region of New York State, here are some observations. 

Hopefully this inspires you to become interested in this unique weather monitoring opportunity anywhere in the United States or other parts of the world using inexpensive and easy to set up equipment.


Twice daily and from more than 90 launch sites in the United States, the National Weather Service releases weather balloons to help monitor upper air observations for the first 15 miles of atmosphere. The closest launch site to me comes from the Albany area of New York and currently the exact location is on the grounds of University of  Albany instead of at an official NWS facility.

Even with all the advancements in space or ground based radar or other sensors, a radio sonde balloon still is one of the best ways to monitor a variety of useful measurements.

Setting up a receiver which listens for these weather balloons is relatively easy and inexpensive. Not much additional knowledge is needed and generally the project of setting up a ground receiver will teach a number of other useful things related to some basic RF and computer related skills to anyone interested in STEM related interests.

30 Days:  What Did I Learn?

Different times of the year of course will have different general weather characteristics. Here in New York, December and January are known to be a bit tricky thanks to cold and wet weather which usually includes some gusty conditions too!

From my home in Poughkeepsie shown as the radio tower on the map, I am easily able to receive the Albany area launched balloons once they generally reach around 17,000 feet AGL. 

Signals first are heard by my antenna at an average of 58 miles south of the launch point and the average furthest signals away are closer to 100 miles usually towards the north east.


Looking at the above map, green target symbols are for where the balloon signal was first received and the red target symbol is where the last signal heard by my receiver system.  A explosion icon is where the balloon reached maximum altitude before it burst and started to descend.

Given the distances involved from my home location, a quick retrieval is not very likely by me but the goal is eventually to capture one and send it back to the National Weather Service.

In general, the wind mostly blows west to east. On more than a few occasions, it got so windy, some balloons traveled so quickly and accurate telemetry was not received for too long. 

On average, locations are sent once every 10-15 seconds and more than 3000 positions are captured per flight. Here is an example of January 22nd to 29th 2024 recordings and general statistics.


The blue lines on the map are the flight paths and there is much greater granularity to be observed when plotting the path on Google Earth. Its worth noting that sometimes the GPS on the balloon sometimes sends a false report for a short time to help explain the straight horizontal or vertical lines on the map.


Within the AutoRX application which is what runs on a Raspberry Pi based receiver along with an SDR dongle, its easy to also output in real time to Google Earth to visualize in 3D, such as to see where packets were not received by looking at the lighter colored part of the map when zoomed in. Sometimes wind gusts make the balloon much faster than the reporting transmissions occur.


Here is a converted MKV to GIF video file zooming around from azimuth and elevation angles to show more details in the North East from receiving site, path and location details during the February 1st evening launch from Albany area.


It is interesting to see how the wind blows is sort of the summary of this article.  Data like this is just one of the many inputs used in more complex weather forecasting.  When the time is right and weather nice, it will be fun to retrieve a balloon once its on the ground. 

Details about that can be found on www.sondehub.org and there are also portable receivers easily created from the ESP32 LoRa boards like the Heltec V3 which also runs other projects like Morserino, HASviolet, LoRa APRS and MeshTastic.

Wednesday, March 2, 2022

HVDN LIVE: A Really Fast and Far USMA High Altitude Balloon Project

 


Back on a windy February Saturday morning, the United States Military Academy at West Point launched what was to be one of its most interesting high altitude balloon projects to date.

Join HVDN Live to get the official debrief on this really interesting project detailing the February 12th launch, its payload, visualized data and its retrieval process.


Date:  March 2nd 2022

Join Meeting:  https://meet.jit.si/hvdn/live03032022

Details:  8:00 PM EST (Duration ~60 Minutes)

 




Monday, May 3, 2021

UPCOMING 5/17/2021 HVDN:LIVE - Putting balloons into the sky with USMA



On April 27th 2021, the United States Military Academy at West Point put its 11th Astronomy Club and Amateur Radio Club balloon up into the atmosphere of the Hudson Valley and reached 80,000 ft.

Cadets Raymond Triggs '24, Rathin Shah '24, Jacob Willis '23 and Nolan Pearce '22 KE8JCT led a team of fourteen cadets, four of which also have amateur radio licenses.  A total of seven USMA faculty members, including  MAJ Robert Perezamemany and COL. Stephen Hamilton KJ5HY, MAJ Ben Popko N2IAV and Dr. Kate Duncan KB2ZOO helped make this years mission a success.

CDT Nolan Pearce '22 KE8JCT

Please join HVDN: LIVE on May 17th at 8:00 PM EST for a detailed overview of this project

CIC(Cadet In Charge) Pearce will cover the design, build process, launch and recovery of the 6 lb.  STEM focused payload which  included:

  • VHF APRS
  • GPS
  • SSTV
  • GoPro camera
  • Space beer? (Wet yeast!)
  • More....
Cadet Pearce will share details from this years launch over a 30 minute presentation with audience questions saved until the end.

Nolan is active within the USMA radio club W2KGY which will also be participating as N2D during Hudson River Radio Relay this year and he also has a rather excellent blog covering many topics of interest to the amateur radio community.

How to attend?

This presentation is free for anyone to attend via the free open source Jit.si application and will also be live streamed on the HVDN YouTube Channel.

First 50 guests can join via https://meet.jit.si/hvdn/livemay2021 and use password = helium

Additional "human" attendees can follow live or during the replay on the HVDN Video Channel

Thursday, February 25, 2021

Getting high with Xyla Foxlin?


Xyla Foxlin

Really tried hard on a catchy title for this amazing spin on putting something unique into high altitude exposures.   

Credit for this goes to RTL-SDR.com  for sharing this first though. Check this out and more of Xyla's amazing adventures below. 



Thursday, June 27, 2019

The Smallest Digipeater: New PicoAPRS Trick


Lately it seems balloons are everywhere in and around the Hudson Valley of New York. The Empire State Hot Air Balloon Festival has just concluded this past weekend,  this upcoming weekend is the anticipated "Reach For Near Space" balloon launch and middle of next month is the Hudson Valley Balloon Festival taking place again at the Dutchess County Fair Grounds.

Earlier still, this past April was yet another successful high altitude balloon launch by the United States Military Academy Astronomy Club which reached an altitude just over 100,000 feet and only traveled about 100 miles away in the process.

Path of the 2019 USMA BalloonSat. Altitude reached was just over
100,000 feet and landed more than 100 miles from launch point

Both the USMA Cadets and the Reach For Near Space team led by Gary KD2PYB use APRS to track the weather balloons.  Last summer, Steve K2GOG also used APRS to track his much, much lower elevation manned balloon flight.


APRS Transmitters for Balloon Tracking

There are many easily obtainable VHF 2m amateur radio APRS "transmitters" to be considered for balloon tracking, but there is one that has recently added a new trick to its list of features and its the PicoAPRS.

The popular Sainsonic AVRT5, Byonics MicroTrak 2001, TrackSoar V2, StratoTrack, and BigRedBee are all relatively low cost, low weight options but PicoAPRS and PicoAPRS Lite offer a few unique things not found always found in the other products mentioned that may appeal to those interested in high altitude device tracking.

PicoAPRS v2 & v3

The latest PicoAPRS is 37% smaller than the original v2.  Version 3 is only 44 grams including battery.  The PicoAPRS Lite which is designed for balloon enthusiasts is only 7 grams, without battery and antenna. Both versions contain a receiver to provide a fully functioning APRS tracker as well as a display and simple 3 button interface for configuration.

PicoAPRS Lite does not have a display and must be provisioned by computer.  The engineer behind the PicoAPRS products, Taner DB1NTO, has created near identical firmware for all three versions and now includes the ability to "digipeat" APRS packets which may be very useful for those looking for a tracker and a payload to be monitored from the ground. The PicoAPRS Lite unfortunately at this time does not support the digipeat function.

Temperature and barometric pressure sensors are built into the PicoAPRS Lite too which makes its APRS data capable of sharing more than just its GPS location.

Roughly costing $159 USD, the PicoAPRS may be a higher quality option compared to the Sainsonic AVRT5 which is $40-50 USD less but at a far higher considerable weight.



The "Digipeater" Firmware for PicoAPRS

Because the PicoAPRS products are designed around the ATmega 1284p micro-controller,  there is a lot of flexibility for future upgrades and features. The entire revision log can be found here for the older, current and latest PicoAPRS products

After I upgraded my V2 PicoAPRS to firmware version v014, it was easy to go from tracker mode to digipeater mode by simply toggling to the appropriate menu.

Perhaps a balloon borne, solar or battery powered PicoAPRS digipeater would be a fun project this summer.  Maybe in the future the PicoAPRS Lite will support the ability to digipeat or the PicoAPRS v3 to support some form of telemetry like temperature and air pressure.


Wednesday, June 26, 2019

Firmware Is Fun: 2019 Kenwood Updates


As June 2019 comes to an end, there are many exciting things taking place within amateur radio and included in the list is a firmware update to three APRS capable Kenwood radios including the TH--D74.




Yaesu is getting ready to ship its new FT-3DR  in July 2019 which includes APRS and Fusion capability. The new firmware that Kenwood has rolled out to the TH-D72, TH-D74, TM-D710 and TM-V71 will allow some of the more Yaesu specific APRS telemetry to be easily decoded on the Kenwood radios.

Most exciting in the release notes include the Kenwood radio ability to decode telemetry from the new PSAT2 satellite launched via the historic SpaceX Falcon Heavy during the early morning hours of Tuesday June 26th 2019. The PSAT2 satellite carries some interesting payloads for amateur communication and it is nice to see a vendor such as Kenwood being ready to support it.

The Kenwood TH-D74 is the only non Icom branded radio to support the D-Star digital voice mode. The firmware update also provides new functionality to allow enhanced reflector access using XLX as well as REF, DCS and XRF connection methods.   

While this is not ground breaking on the oldest digital voice mode in use today in amateur radio, it does provide some renewed interest and capability to better use the Kenwood TH-D74 in certain "cross mode" situations to enable limited communications into other digital voice networks that use Yaesu Fusion, DMR, NXDN and P25.

The firmware updates can be found on the Kenwood website for amateur radio downloads


Instructions to upgrade the firmware for the TH-D74 are very clear and easy to follow. 

One thing to note is that the file name appears to be for the TH-D74E version which denotes European specific functionality, but is indeed for the TH-D74A in use across countries that have 220 MHz band licensing as well as different repeater offsets.  




After upgrading my TH-D74A with the 1.09 firmware, there was no loss of functionality. 

This is perhaps the first firmware issued by a vendor in a while that adds functionality and did not need to improve any features that were not functioning to best of ability.










Sunday, June 16, 2019

Upcoming Balloon Launch: SSTV & APRS from "near-space"


The Binghamton, New York headquartered, Triple Cities Makerspace intends to launch a balloon with amateur radio payloads on June 29th in order to promote the convergence of various hobbies.




The Triple Cities Makerspace, Inc., a 501(c)3 not-for-profit workspace and education center is launching a high altitude balloon to near space (100,000 feet) and transmitting photos of the atmosphere during the flight.  The most recent New York based amateur radio technology assisted balloon launch was completed by the West Point Amateur Radio Club on April 6th 2019 where it reached a transmitted elevation of 98,087 feet.




The Triple Cities Makerspace launch will take place on June 29th around 10:30 AM, tentatively depending on weather. The balloon will be tracked by amateur radio and also live photos during the flight will be transmitted back to the ground via amateur radio.

The group hopes that many radio operators will participate by listening in and uploading photos they receive to the project’s website: https://reachfornearspace.com 

The flight is expected to last around 2.5 hours and the coverage area of reception within 500 miles.
Gary Dewey, an amateur radio operator (callsign KD2PYB) and member of the Triple Cities Makerspace, is leading the project. “I’ve always dreamt of going to space, but this could be the next best thing – building something that goes to (near) space. I hope this project inspires others to experiment and reach for their dreams.”

Listen Up!

Gary further shares that they are using the MicroTrak-2001 from Byonics for APRS and will be transmitting on 144.390 MHz with the call sign KD2PYB-11.

For SSTV, they are using a raspberry pi zero with the pi camera, a pHAT dac for a sound card interface and inexpensive Baofeng brand radio for the transmitter. They will be transmitting on 145.600 MHz.

The pi runs a shell script set up as a linux service (just in case it reboots midflight) that takes a picture and formats it, then converts it to Martin2, then plays it out the sound card where it will be transmitted over the handheld.

Please look at https://reachfornearspace.com/ for the most up to date information about Gary's balloon launch.

Decoding APRS & SSTV

For those looking to monitor this fascinating experiment, here are some inexpensive options for hardware and software on June 29th.

Any smartphone running the free Droid SSTV app simply held up to the speaker of any VHF receiver is capable to decode the image signals. This "technique" is known as passive coupling. For better signal decoding, a wired approach can be employed with the appropriate cable using the same software and interface to a smartphone or tablet.  There are too many desktop/laptop options to consider, but should be easy to configure.

For real time APRS tracking, the same passive method can be used with APRSdroid software or with an appropriate cable to interface the radio to a smartphone. Mode advanced options could include a Mobilinkd TNC2, combined with any 2m capable hand held radio.

A simple "whip" type antenna would be capable of receiving the signals, but a directional antenna such as a 3 element VHF 2m Yagi would be better.

This should be an exciting event.