Category Archives: Shortwave Radio

Radio Waves: Maritime Mobile Net Assists, Voice of Ambiguity, Promising Solar Cycle 25 Prediction, and the Future of Ham Radio

Radio Waves:  Stories Making Waves in the World of Radio

Because I keep my ear to the waves, as well as receive many tips from others who do the same, I find myself privy to radio-related stories that might interest SWLing Post readers.  To that end: Welcome to the SWLing Post’s Radio Waves, a collection of links to interesting stories making waves in the world of radio. Enjoy!

Many thanks to SWLing Post contributors Rich Smith, Kim Elliott, and Pete Eaton for the following tips:


Maritime Mobile Service Network Comes to the Aid of Vessel in Distress (ARRL News)

The Maritime Mobile Service Net (MMSN) on 14.300 MHz came to the assistance of a sailing vessel on June 25. MMSN control operator Steven Carpenter, K9UA, took a call on 20 meters from Ian Cummings, KB4SG, the skipper of the Mystic Lady, then some 40 miles east of Florida. Cummings reported that his engine had failed as he was attempting to return to his home port of Stuart, Florida. He not only had insufficient wind, but a strong current was carrying the vessel out to sea.

Cummings had been unable to reach any station via his VHF marine radio, since he was too far from the coast. Assisting in the call was Robert Wynhoff, K5HUT, also an MMSN net control operator. Cummings said his vessel, with one passenger on board, was drifting northwest toward the South Carolina coast.

“A major concern was that the vessel was heading directly towards a lee shore,” the MMSN reported. “Lee shores are shallow, dangerous areas which are a hazard to watercraft. Vessels could be pushed into the shallow area by the wind, possibly running aground and breaking up.”

Carpenter contacted Cummings’ family, who had already called the Sea Tow marine towing service. Sea Tow advised Carpenter to tell the captain to head closer to shore by sailing west, if possible. Carpenter told Cummings that if he was unable to get nearer to shore, he would notify the US Coast Guard, which was already monitoring the situation.

As the MMSN reported, “The Mystic Lady was able to make some headway, but it was very slow. Members of the MMSN made additional calls via landline to the captain’s family as to the ongoing status of those on board. The family was concerned but relieved that communication was established and that all were well.”

Several hours later, the captain advised that the wind had picked up, allowing him to head close enough to shore for Sea Tow to reach the vessel and take it back to port.

The Pacific Seafarers’ Net, which monitors 14.300 MHz from the West Coast after the MMSN secures at 0200 UTC, kept in touch with the Mystic Lady into the night while it was under tow.

The tired, grateful captain later messaged the net, “A million thanks to everyone last night who helped rescue us on 14.300. Everyone chipped in as we drifted north in the Gulf Stream 60 miles headed to a lee shore. The MMSN net control and several others stayed with us for hours, phoned people, and were immensely helpful. The situation on board was dangerous. We are now safely under tow home. You folks are amazing!”

In operation since 1968, the MMSN monitors 14.300 MHz 70 hours a week to assist vessels and others in need of assistance. — Thanks to MMSN Net Manager Jeff Savasta, KB4JKL[]

VOA: Voice of ambiguity (The Hill)

From 1985 to 2017, I was an audience research analyst at the Voice of America. During that time I was preoccupied by the fact that the BBC World Service had a larger audience than VOA. VOA had a larger budget, so money was not the issue.

In audience surveys, I inserted a question asking those who listened to BBC more often than VOA: “why?” The answer provided most often was trustworthiness of the news.

I asked a listener from Burma (now known as Myanmar) why he thought BBC is considered more trustworthy than VOA. He replied that VOA is more closely connected to the U.S. government than BBC is to the U.K. government. I asked how he knows this. He responded that it’s because VOA says so every day.

He was referring to the “disclaimer” at the beginning of the editorials that, by the 1980s, were heard daily on VOA’s English broadcasts: “Next, an editorial reflecting the views of the United States government.”

The daily editorial was a requirement handed down by VOA’s parent U.S. Information Agency. The editorials are drafted by the VOA’s policy staff, sent to the State Department for approval and finally broadcast after a sometimes lengthy back and forth.

Michael Pack, the new CEO of the U.S. Agency for Global Media, VOA’s present parent agency, is restoring the editorials to their previous prominence on VOA. In recent years, with diminished radio output, editorials were relegated to VOA’s little-viewed satellite television service and to a website separate from the main voanews.com. The revival of the editorials is a step in the repoliticization of VOA.[]

Newer Solar Cycle 25 Forecast Runs Counter to Consensus (ARRL Newsletter)

Scientists associated with the National Center for Atmospheric Research, the University of Maryland, NASA Goddard Space Flight Center, and other institutions are offering a “bold prediction” on how Solar Cycle 25 will play out. In a paper, “Overlapping Magnetic Activity Cycles and the Sunspot Number: Forecasting Sunspot Cycle 25 Amplitude,” they assert that the next sunspot cycle will be of major proportions. The forecast stands in stark contrast to the consensus of forecasters who predict that the magnitude of the nascent Cycle 25 may not be much different from the current unremarkable solar cycle, which appears to have reach its low point.

“From the dawn of modern observational astronomy, sunspots have presented a challenge to understanding — their quasi-periodic variation in number, first noted 160 years ago, stimulates community-wide interest to this day,” the abstract points out. “A large number of techniques are able to explain the temporal landmarks, (geometric) shape, and amplitude of sunspot ‘cycles,’ however, forecasting these features accurately in advance remains elusive.”

Monthly sunspot numbers since 1749. The data values are represented by dots, and the 12-month running average values are illustrated as a red shaded area. Vertical blue dashed lines signify the magnetic activity cycle termination times that trigger the rapid growth of sunspot activity.

The paper notes that recent studies have illustrated a relationship between the sun’s 22-year Hale magnetic cycle and the production of sunspot cycle landmarks and patterns, but not the amplitude of the cycle.

“Using discrete Hilbert transforms on 270 years of monthly sunspot numbers to robustly identify the so-called ‘termination’ events — landmarks marking the start and end of sunspot and magnetic activity cycles — we extract a relationship between the temporal spacing of terminators and the magnitude of sunspot cycles,” the abstract explains. “Given this relationship and our prediction of a terminator event in 2020, we deduce that Sunspot Cycle 25 will have a magnitude that rivals the top few since records began. This outcome would be in stark contrast to the community consensus estimate of Sunspot Cycle 25 magnitude.”[]

The Uncertain Future of Ham Radio (IEEE Spectrum)

Software-defined radio and cheap hardware are shaking up a hobby long associated with engineering

Will the amateur airwaves fall silent? Since the dawn of radio, amateur operators—hams—have transmitted on tenaciously guarded slices of spectrum. Electronic engineering has benefited tremendously from their activity, from the level of the individual engineer to the entire field. But the rise of the Internet in the 1990s, with its ability to easily connect billions of people, captured the attention of many potential hams. Now, with time taking its toll on the ranks of operators, new technologies offer opportunities to revitalize amateur radio, even if in a form that previous generations might not recognize.

The number of U.S. amateur licenses has held at an anemic 1 percent annual growth for the past few years, with about 7,000 new licensees added every year for a total of 755,430 in 2018. The U.S. Federal Communications Commission doesn’t track demographic data of operators, but anecdotally, white men in their 60s and 70s make up much of the population. As these baby boomers age out, the fear is that there are too few young people to sustain the hobby.

“It’s the $60,000 question: How do we get the kids involved?” says Howard Michel, former CEO of the American Radio Relay League (ARRL). (Since speaking with IEEE Spectrum, Michel has left the ARRL. A permanent replacement has not yet been appointed.)

This question of how to attract younger operators also reveals deep divides in the ham community about the future of amateur radio. Like any large population, ham enthusiasts are no monolith; their opinions and outlooks on the decades to come vary widely. And emerging digital technologies are exacerbating these divides: Some hams see them as the future of amateur radio, while others grouse that they are eviscerating some of the best things about it.[]


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A new visitor in the shack: The HobbyPCB IQ32 SDR QRP transceiver

Last week, I took delivery of an IQ32 SDR Transciever on loan from HobbyPCB. The IQ32 has been on the market for a few years now and is a fusion of the HobbyPCB RS-HFIQ and the STM32-SDR.

I’ve been told by the HobbyPCB team that the STM32-SDR was developed a few years ago “when PSK31 was the digital mode du jour and PS2 keyboard roamed the land.” Cool thing is, the team is still updating the radio’s firmware.  Most recently, they expanded the rig’s CW capabilities and re-worked the memory structure and organization based on user feedback.

I see the IQ32 as a collaborative transceiver project and look forward to trying a few QRP PSK-31 contacts in the field with only the transceiver, antenna and a PS2 keyboard. Need to check the shed for that keyboard!

Anyway, should be fun!

I plan to write an article for The Spectrum Monitor about the IQ32, explore how it came about, and point out some of its unique features. It’ll be less a review and more of a tour of this little rig.

For more IQ32 info and specs, visit HobbyPCB online.

April’s collection of Japanese language WebSDR recordings for June 2020

Many thanks to SWLing Post contributor, April TimeLady, who writes:

This is a collection of SDR recordings made of Japanese language radio stations for June 2020.” It may be useful to note that I had encoded them at .ogg from .wav, and archive.org automatically converts audio to .mp3 format. The great majority of the recordings are from NHK JOAK Tokyo; I have reason to believe that it broadcasts in AM Stereo. Those recordings with “sas” in the filename are in stereophonic sound, or supposed to be at least. I am unsure if what I hear are artefacts of skywave or AM interference or actually stereo, but it seems to be so when I listen to the playback of such files. The English language Wikipedia article on AM stereo is definitely not complete when it comes to Japanese radio stations, and there does not seem to be a corresponding article on the Japanese Wikipedia..

Click here to listen on the Internet Archive.

LRA36: Radio Nacional Arcángel San Gabriel test broadcast Saturday July 11, 2020

Source: Base Esperanza – Antártida

Many thanks to SWLing Post contributor, Adrian Korol, who shares the following notice from the Argentine Antarctic station, LRA36:

Saturday, July 11, from 1400 to 1500 UTC, a test broadcast from LRA 36 Radio Nacional Arcángel San Gabriel on 15476 khz using USB.

Thank you for the tip, Adrian!

High-Frequency Parties asks FCC to question proposed Chicago DRM broadcaster’s true mission

Many thanks to SWLing Post contributor, Bennett Kobb, who shares an FCC Informal Objection he drafted and filed together with Kim Elliott and Christopher Rumbaugh.

Click here to download the Informal Objection. (PDF)

Radio World published a great summary of the filing today:

There’s a plan in the works to build a new international shortwave radio station in Illinois, one that would use the Digital Radio Mondiale modulation system. But now several prominent members of the U.S. shortwave community are asking the Federal Communications Commission to take a closer look first.

Parable Broadcasting Co. in April asked the FCC to allow it to build the station in Batavia, Ill., west of Chicago, using the call sign WPBC. It wants to offer “broadcasting and data services.”

Specifically, Parable wrote that the station would “serve the areas of Europe that may be authorized by the commission. The planned broadcast content includes religious and educational programming, as well as data content provided by third parties.” It added that it wants to “take advantage of the recent push by the National Association of Shortwave Broadcasters to develop and provide content for the growing DRM market.”

Now three individuals, collectively called the High-Frequency Parties, filed an informal objection. It’s that wording about data content that concerns them.

Bennett Z. Kobb, Kim Andrew Elliott and Christopher D. Rumbaugh said international broadcast stations in the U.S. are intended “to be received directly by the general public in foreign countries.”

Now they told the FCC that it is impossible to tell from the Parable application whether all of the data services and data provided by third parties will qualify. [Continue reading at Radio World…]

Bennett clarified with me:

The [FCC] rules require these [broadcasters] to be 100% broadcast stations, not a cover for some other kind of service.

Because there is no established radio service for international shortwave trading, some have used the workaround of calling them “experiments”. Quite a few such “experimental” stations have been licensed, some at rather high power levels.

See for example this article.

But legally, the Experimental Radio Service is supposed to be for temporary scientific purposes, not ongoing for-profit operations. We don’t know what those stations are really up to because the FCC has kept the details secret. All we know is some technical data such as callsigns, frequencies, QTH.

Instead of experimental stations, others wanting to get into the data business — including the Turms Tech station in New Jersey, and this Parable station in Batavia IL — seem to be using the work-around of the International Broadcast service. That is, proposing an audio programming station that uses the DRM data channel for trading messages.

We are not in the 1970s or 80s. There’s not enough money today in broadcasting audio to other countries, to justify the millions spent on real estate, engineering, antennas and transmitter plant. Most SW broadcasting around the world is not commercial. So it is very peculiar for new entrants to drop major bucks in this field.

The new guys are probably not getting in to spread the gospel. That is a surface paint. There are already several U.S. HF stations with religious content, as you know, including WTWW, WWCR, WRMI, WRNO, WINB, WWRB, WHRI, WBCQ, WJHR etc. and most would welcome new customers for airtime.

No need to construct new stations.

So what is this new station really? Get it out in the open and ask them how they intend to comply with the existing rules. If they are in the business of carrying secure messages for traders, that does not qualify and will need some special FCC action to allow it. Let the public see the reasoning.

The rules that exist are very old. We think FCC needs to do a top-to-bottom review of the HF broadcast rules and scrap a lot of it. FCC should permit stations to be built for U.S. domestic audiences, and they should reduce the minimum AM power (50 kW) to lower this barrier to
entry.

And they should perhaps consider how data communications could be formally authorized. Maybe it wouldn’t be just a broadcast service any more, it could be a HF Communications Service with the old restrictions on languages and advertising discarded and more opportunities for people to try out creative ideas.

So we’re pressing the issue that this needs to be examined. Thanks for reading.

Thank you for sharing this, Bennett! We hope your filing gets its due attention. I also agree on one of your final points, that the FCC lower its 50 kw AM power requirement of a shortwave station as it places a huge barrier in front of would-be shortwave broadcasters.

Listening across the globe: The 2020 BBC Antarctic Midwinter Broadcast

Halley VI Research Station on the Brunt Ice Shelf in Antarctica (Source: British Antarctic Survey)

On Sunday, 21 June 2020, the BBC World Service officially transmitted the 2020 BBC Antarctic Midwinter Broadcast–an international radio broadcast intended for a small group of scientists, technicians, and support staff who work for the British Antarctic Survey.

This is one of my favorite annual broadcasts, and I endeavor to listen every year. Once again, the SWLing Post called upon readers to make a short recording of the broadcast from their locale.

Below are the entries, roughly organized by continent and country/region.

Did I miss your recording?

Putting this post together takes almost a full dedicated day sorting recordings, uploading, and formatting them for the Post. Many readers posted a link to their recording on Facebook, Twitter, or even in the comments section on previous posts. I tried to hunt down these links, but if I’ve somehow missed including your entry, please send me an email with details and a link to your recording; I’ll amend this post.

So, without further ado please enjoy the following recordings:


The 2020 BBC Antarctic Midwinter Broadcast Recordings

Europe

Denmark

SWL: Florián Navarro
Location: Aarhus, Denmark
Notes:

Here are a couple of samples from the 2020 BBC Antarctic Midwinter Broadcast, both on 5790 kHz, the first one at 21:53 UTC, the second one at 21:59 UTC.
My receiver is a JRC-NRD 535 with an AOR LA400 loop antenna and I used a Roland Edirol R-09 recorder.

My location is Aarhus, Denmark. Best reception from here was on 5790 kHz followed by 7360 kHz (weaker signal and a bit background noise) while 9580 kHz was barely audible.

I really enjoy reading your articles, reviews, etc. in both your website and blog. thank you very much!


England

SWL: Paul Lethbridge
Location: Worthing, England
Notes: 9580 as received in Worthing with some talkback from G0JXX on 2mtr to me G3SXE


SWL: David  (G4EDR)
Location: North Yorkshire
Notes:

I used my Tecsun PL-680 and its telescopic whip antenna to receive the annual mid winter broadcast. 5790 kHz was very strong here on the North Yorkshire coast in the UK. My audio recording was taken from the loud speaker using my mobile phone. Hope the quality is acceptable for posting on your website.

73, David – G4EDR


SWL: Mark Hillman
Location: Littlehampton, West Sussex
Notes: 132ft longwire at my QTH in IO90RT (M0TVV)


SWL: Mark Hirst
Location: North Hampshire, UK
Notes:

I hedge my bets this year and monitored both 5790kHz and 7360kHz using my RSPDuo and FRG-7700 respectively.

Below is the beginning of the broadcast on 7360kHz, recorded in North Hampshire, UK:

7360 kHz deteriorated towards the end, so the RSPDuo recording will be the keeper.


SWL: Nick B.
Location: England
Notes:

Some recordings I made this evening on 5790kHz. I’m around 90 miles NE of Woofferton TX so it’s a big signal here!

Using Airspy HF+ Discovery, SDR Console in SAM mode.

Unfortunately, the BBC caused a lot of confusion due to their incorrect broadcast time (and incorrect pluralising Ascension Island!). I hope they managed good reception down in Antarctica.


SWL: Roseanna
Notes:

I’ve got the BBC Midwinder 2020 broadcast recorded in pretty amazing quality for your archive post!


France

SWL: Philippe
Location: Brest. France
Notes:

Good morning Thomas,

i’ve recorded the last BBC Antarctic Midwinter broadcast.

I’m located near BREST, in west France.


Germany

SWL: Martin
Location: Hannover, Germany
Notes:
Here is a recording of the 2020 BBC midwinter broadcast, received in Hannover Germany on my XHDATA D-808 and its telescopic whip antenna, with the strongest signal on 5790 kHz via Woofferton.

Thanks for bringing this broadcast to my attention!


SWL: Andreas Bremm
Location: Western Germany
Notes:

Hello Thomas i can send you my record from the BBC Midwinter Show sounds really good. It’s recorded with Tecsun ICR 100 Revived with Tecsun Pl880 and a MLA30+ Loop in Western Germany


Ireland

SWL: Alan
Location: Ireland
Notes:

5790 kHz Woofferton UK
BBC Antarctic Midwinter broadcast 21-06-2020 21:30UTC

Recorded from County Kildare, Ireland (GRID IO63ri)
Icom-718 and 20m Random wire
Olympus vn-741pc

Best regards,
Alan


Italy

SWL: Marco Origlia
Location: Cuneo, Italy
Notes:

My name is Marco and I am an Italian student in Telecommunications
Engineering. Thanks to one of our Professors, I’ve become enthusiast for
radio communications and day by day I’m becoming a shortwave listener. I
must thank you for your blog. I’ve added it to my RSS feed aggregator so
that I don’t miss any of your posts, which I always find very interesting.

Upon your invitation I would like to share a short recording of the BBC
Antarctic Midwinter Broadcast I made. The data of the recording are the
following:

Location: Cuneo, Italy (44.384413N, 7.542607E), from an indoor location
of a urban area
Frequency: 7360 kHz
Receiver: TECSUN PL-660 with wire antenna leaning out of the window
Time: UTC 2020-06-21 21.41

Although at times the signal faded, the broadcast was pretty clear.

I haven’t bought a jack to jack cable to pipe the output of the radio to
the computer, yet. So I plugged my headphones into the computer, I put
the headphone microphone on the radio speaker, I recorded the broadcast
with OBS and converted it using VLC.

Thank you again for your service to the shortwave listeners community,

Marco Origlia


SWL: Giovanni Lorenzi
Location: Messina, Sicily Island
Notes:

I’m Giovanni Lorenzi, and I’m a amateur radio too. I live in Messina, Sicily Island. My working condition are: receiver Yaesu FRG-7000 and dipole antenna.

I’ve tuned the program above and I’m sending 3 audio clip about.

Giovanni Lorenzi


SWL: Giuseppe Morlè (IZ0GZW)
Location: Formia, Central Italy
Notes:

I’m Giuseppe Morlè, iz0gzw, from Formia, Central Italy, on the Tyrrhenian Sea …
Also this year I send you the link where you can see My Antartic Midwinter 2020 video.
I hope you will publish it on SWLing Post for the swl community of the world …

I thank you and always wish you good listening.
Ciao from Italy.


Poland

SWL: Przemys?aw Ryszka
Location: Jaslo, Poland
Notes: Recorded in Jaslo, south-eastern Poland using Tecsun PL-360 and some lenght of a wire.


Russia

SWL: Anton Kolesnichenko, R9LAU
Location: Tyumen, Russia
Notes:

QTH Loc: MO27SE
Frequency: 7360 kHz, 5790 kHz
Receiver: Icom 7300
Antenna: 40M dipole

73 de Anton, R9LAU


SWL: Dmitry Elagin
Location: Saratov, Russia
Notes:

Good afternoon!
Hello from Saratov, Russia!

UTC time: 21:30 – 22:00
Frequency khz: 9580
Weak signal. Local impulse interference. Sometimes fading a weak signal and noise at frequency.
Signals 7360 and 5790 are much stronger.

Receiver: SDRplay RSP1
Antenna: Long wire antenna 7 meters + counterpoise 20 m. (10 – 14 m. above ground level)
MFJ-959C Antenna Tuner SWL and Preamp / MFJ-931 Artificial RF Ground
Receiver location: Saratov, Russia


North America

Canada

SWL: Richard Lacroix
Location: Toronto, Ontario
Notes:

I managed to receive on all 3 frequencies from Toronto, Ontario Canada. Best
of them was 9580 kHz. I first started to listen on 7360 kHz as this was the
only working frequency. Reception was poor, hence the poor audio recording.
Conditions rapidly got much better which allowed me to switch to 9580 during
the broadcast period with much better reception.

LOCATION: Toronto, Ontario Canada
TIME: 2130 – 2200 UTC
FREQUENCY: 9580 kHz
RECEIVER: SDRplay RSP2duo
ANTENNA: Barker Williamson, Inverted V
CONDITIONS: Urban environment, thunderstorm activity


SWL: Richard Langley
Location: Hanwell, New Brunswick
Notes:
I obtained a good recording of the BAS broadcast here in New Brunswick, Canada, on 7360 kHz using a Tecsun PL-880 receiver outdoors at my house with a Tecsun AN-03L 7-metre wire antenna strung to a nearby tree. Attached is a photo of the “listening post” at the back of my mosquito-infested backyard. Note the bug spray!

You can hear my full half-hour recording, with more details on reception, on the Shortwave Radio Audio Archive: https://shortwavearchive.com/archive/bbc-world-service-annual-antarctic-midwinter-broadcast-june-21-2020


SWL: David Elden
Location: Ottawa
Notes:

Received in Ottawa, Canada using an XHDATA D-808 with ~15 feet of wire clipped to the telescopic antenna. Location was on a balcony, east facing about 20 feet above the ground. Nothing heard on 5790, faint signal on 9580 and readable with variable fading on 7360 (maybe S3R3-4). Recording here:


Oceana

Australia

SWL: Cameron Campion
Location: Melbourne
Notes:

Hello Thomas, Here is my reception of the BBC Midwinter broadcast from here in Melbourne, Australia with my XHDATA Receiver. I received first on 7360khz and then switched to 5790khz where the reception improved substantially.


New Zealand

SWL: Chris Mackerell
Location: Marahau, New Zealand
Notes:

Here are a couple of clips from the BBC Midwinter broadcast
for Antarctica received here in Marahau, New Zealand.

This is 7360 kHz – the best of the signals. 5790 was weaker,
and 9580 was just a spike on the SDR display.

The clips are the first & last minute or so.

Receiver was an Elad DUOr with a Wellbrook loop antenna.

73 Chris


South America

Argentina

SWL: Ulises Chialva
Location: Rio Primero, Argentina
Notes:

My name is Ulises Chialva, Im 46 years old and I live in a small rural town called Rio Primero, in the Cordoba province, central region of Argentina. Im a DXer since the late 80´s and been a member of several clubs here in Argentina, also a monitor for Radio Netherlands in the 2000´s.
Today is a cold Fathers day here in Argentina, and at the moment of listening I was also enjoying a really beautiful sunset.

I’ve listen to this years BBC midwinter broadcast with my Sony ICF-2010 and a 45 meters long random wire antenna with a 9:1 balun.

Conditions were pretty good with the UK so I’ve listened to Woofferton station transmissions very clear on 5790 and specially 7360 KHz; 6170 and 9580 from Ascension Island were barely audible here.

I send to you a little more than 1 minute recording of 7360 KHz from Woofferton, UK; and a photo of my little shack here at home.


Brazil

SWL: Carlos Latuff
Location: Porto Alegre, Brazil
Notes:

It was a risky listening to the Midwinter Broadcast during the Covid-19 pandemic, because I had to leave my home since inside my apartment it is practically impossible to listen to shortwave radio due strong interference.

I took my Tecsun PL-606 (telescopic whip only) to the Guaiba waterfront near my home here in Porto Alegre. It was a calm night with calm weather and the place was CROWDED; people with and without masks, ignoring the social distancing. I stayed only for a short time there, trying to keep myself away from people.


Chile

SWL: Francisco Miranda Fuentes
Location: Santiago, Chile
Notes:

I send you my participation to reception of the activity “2020 BBC Antarctic Midwinter Broadcast on June 21”. I also attach a recording in mp3 format corresponding to 44 seconds of the event.

Name: Francisco Miranda Fuentes
Receiving frequency: 7360 khz at Woofferton
Receiver: Kenwood R-1000.
Antenna: T2FD
Location of the box: Santiago, capital city of the Republic of Chile.
Recording: 128 bps mp3 format


Costa Rica

SWL: Julio Campos
Location: Costa Rica
Notes:

Hi. This is my brief reception. It was still daylight here, and there was a heavy storm. The reception was poor.


Wow!

Once again, many thanks to all of you who submitted your recordings of the BBC Midwinter Broadcast!

We’ll be sharing this post with both the British Antarctic Survey and the BBC World Service. And to all of you, from the SWLing Post: Happy (Belated) Midwinter! Happy Summer/Winter Solstice!


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