Category Archives: Shortwave Radio

An HF “Renaissance”: Militaries reinvests in shortwave communications

Many thanks to SWLing Post contributors Michael Guerin and Dennis Dura who share the following story from C4ISR.net (my comments follow excerpt):

LONDON — Special operations commands across Europe are ramping up their capabilities with high-frequency communications to ensure connectivity on the battlefield. Leaders there are turning to high frequency communications as a way to optimize properties that provide a low probability of interception and detection.

Special forces in France, Germany, Poland and Ukraine continue to receive high-frequency, or HF, systems as a way to diversify communications plans, industry sources confirmed to C4ISRNET.

Some special operations organizations have selected L3Harris’ AN/PRC-160(V), industry sources said.

Enhancements in HF come at a time when NATO members and partner forces are suffering from a disruption of satellite communications, particularly along the alliance’s eastern flank where Russian armed forces continue to conduct electronic warfare.

In an online presentation to the Association of Old Crows on Aug. 6, Paul Denisowski, product management engineer at Rohde and Schwarz North America, described how communications satellites are vulnerable to antisatellite systems as well as ground-, air- and space-based “kill vehicles.”

“China, Russia and the U.S. have all carried out ASAT tests and many other countries are developing ASAT capabilities,” Denisowski said, using an acronym for anti-satellite. To boost resilience, some commands are turning to high-frequency communications.

During the presentations “Lost Art of HF” and the “Rebirth of Shortwave in a Digital World,” Denisowski explained that HF is making a comeback in local and global communications. This renaissance comes as the result of improvements in a range of fields, including antenna design, digital modulation schemes and improved understanding of propagation.

The market is also helped by reductions in size, weight and power requirements as well as the introduction of wideband data, enhanced encryption algorithms and interoperability with legacy HF sets, he said.

“This means end users are now benefiting from easier-to-use and cheaper solutions featuring improved data performance, audio quality, availability and operation. And because of a lack of infrastructure, HF is less expensive and relatively robust, although solar events may temporarily disrupt HF communications,” he said. Specific upgrades include “Adaptive HF,” which comprises automatic selection of frequency and the establishment of communication through automatic link establishment, or ALE, technology.

The latest technology of its type — 4G ALE — is capable of supporting wideband HF communications, or WBHF for short, providing end users with the ability to “negotiate bandwidth, modulation type, error correction and the number of sub-carriers,” Denisowski explained.

“ALE selects frequencies using link quality analysis, which allows it to listen and determine if a channel is in use and adapt if conditions change,” he said.

He added that HF can now support data rates up to 240 kilobytes per second on a 48-kilohertz channel, particularly useful for more robust communications in hostile environments.

“WBHF has already [been] used in military trials. It’s a technology which is most definitely here and now,” Denisowski said.

[…]The report explained how the U.S. Army and European NATO partners explored such scenarios during a series of joint exercises in 2019 and 2020. “A new need arrives for alternative communication skills, justified through the increasing vulnerability from SATCOM jamming as well as the potential failure of SATCOM as a result of attacks on spacecraft or through the use of anti-satellite surface-to-air missiles,” the report’s author, Jan Pätzold, told C4ISRNET. “The development of alternative skills is important to reduce dependence on SATCOM.”

According to Pätzold, so-called Skywave HF, which bounces signals off the ionosphere, enables beyond line-of-sight communications across “thousands of kilometers” without requirements. HF communications is also ideally suited to supporting local network coverage. “This offers advantages over SATCOM in urban areas, but also in mountainous areas or far north latitudes where no line of sight to existing satellites is possible,” Pätzold said

Click here to read the full story at C4ISR.net.


My comment: What’s old is new again

As I’ve said in previous posts:

The shortwaves–which is to say, the high-frequency portion of the radio spectrum–will never disappear, even though international broadcasters may eventually fade into history. I often think of the shortwave spectrum as a global resource that will always be here, even if we humans are not. But on a brighter note, I expect the shortwave spectrum will be used for centuries to come, as we implement various technologies that find ways to make use of the medium.

HF communications require so little infrastructure to be effective. It’s a global communications medium that carries messages and data at the speed of light with no regard for national borders. Sure, there are reliability issues with HF propagation, but even amateur radio enthusiasts employ weak-signal digital modes that almost seem to defy propagation. I’m certain with the backing of the military, even more robust digital modes will be used (above and beyond ALE).

Even the business world sees opportunity. Case in point: we’ve seen stock traders set up point-to-point HF communications to edge out their competitors who rely on fiber optics.

HF systems are more durable and easier to harden to endure times of intense space weather events that affect our sat networks as well.

But then again, I’m preaching to the choir.

Free Radio Skybird: Septeber 27 & October 4, 2020

(Source: Pete Madtone)

Some news about the next transmission of DJ Frederick’s Free Radio Skybird on Sunday 27th September at 1100 UTC (12 Noon UK time) on 6070 kHz shortwave via Channel 292 (and repeated the week after.) Next week’s show features DJ FrederickJustin Patrick Moore’s Radiophonic Laboratory and Shane Quentin with more of that Radio Reflexology and our very own One Deck Pete with “Tunes to cheer you up” series. 49 metres on a Sunday afternoon is once again where it’s all at! If you haven’t got a suitable radio it can also be heard on the SDR link on their site here.Also on Sunday 27th September 2020 (and repeated the week after) at 1800 UTC (7pm UK time) on 3955 kHz via Channel 292 is the final transmission of Radio Lavalamp for a while. The ultimate programme of the year will feature One Deck Pete with his The Purple Nucleus of Creation 003 mix. Tune in to “Your ethereal shortwave music station” on 3955 kHz or using this link here when the time is right! #Freeradioskybird #Radiolavalamp #shortwavesnotdead #Funwithashortwaveradio

University of Brasilia and the Ministry of Science, Technology and Innovation to experiment with 2.5 kW DRM transmitter

(Source: DRM Consortium)

A new era begins for Brazilian radio broadcasting with the arrival and installation of a first shortwave digital radio DRM transmitter developed and manufactured in the city of Porto Alegre by BT Transmitters. The transmitter will be sited at the public broadcaster (EBC) Rodeador Park, near the capital Brasilia, to be connected to one of the huge HF antennas of EBC (National Amazon Radio is transmitted from there).

The equipment (a transmitter of 2.5 kW) will be tested on an experimental and scientific basis with the help of the University of Brasilia (UnB) and the Ministry of Science, Technology and Innovation.

The National Radio of the Amazon broadcasts from Brasilia especially to the Northern, Amazonian region of Brazil. The signal will be also available in the neighbouring countries to the north of Brazil. This is primarily a domestic shortwave digital project aimed at the Amazon where about 7 million riverside and indigenous people live. They are far from any other means of communication as there is no mobile phone or internet coverage.

Rafael Diniz, the Chair of the DRM Brazilian Platform, thinks that: “Shortwave digital radio (DRM) for the Amazon region will ensure a new level of communication and information as Nacional’s programming is both popular and educational. It brings audio and much more at low energy cost to whole communities there. With the adoption of digital radio, one of the major problems, that of poor sound quality affecting at times shortwave, will end. Listeners will be able to enjoy DRM broadcasts in short wave with a quality similar to that of a local FM station together with textual and visual multimedia content.”

“This is a huge step forward, says Ruxandra Obreja, DRM Consortium Chair, “not just for Brazil but for the whole of Latin America. When everything else fails or does not exist, DRM will provide information, education, emergency warning and entertainment at reduced energy costs.”

Click here to read this article at the DRM Consortium website.

As a side note, I do hope the DRM Consortium or the University of Brasilia and the Ministry of Science, Technology and Innovation somehow make DRM receivers available to the “7 million riverside and indigenous people” they hope will eventually benefit from their broadcasts. At this point, however, this sounds more like a university experiment similar to those conducted at the Budapest University of Technology in Hungary.

Help Mark identify this radio in The New Avengers

Many thanks to SWLing Post contributor, Mark Hirst, who writes with another mystery radio to identify:

This radio (see photo above) is featured in the mid 1970’s TV show ‘The New Avengers’, an episode called “To Catch a Rat”. Mysterious morse code messages are being intercepted in this scene.

Can you help Mark identify this radio model? Is it even a radio or is it simply a speaker? Please comment if you can ID this one!

I’ll add this post to our (massive) archive of radios in film.

Faulty TV to blame for 18 month broadband outage

Many thanks to SWLing Post contributor, Jeremy, who–in light of our recent discussions about RFI–shares the following news item from the BBC:

The mystery of why an entire village lost its broadband every morning at 7am was solved when engineers discovered an old television was to blame.

An unnamed householder in Aberhosan, Powys, was unaware the old set would emit a signal which would interfere with the entire village’s broadband.

After 18 months engineers began an investigation after a cable replacement programme failed to fix the issue.

The embarrassed householder promised not to use the television again.

The village now has a stable broadband signal.

Openreach engineers were baffled by the continuous problem and it wasn’t until they used a monitoring device that they found the fault.

[…]”Our device picked up a large burst of electrical interference in the village.

“It turned out that at 7am every morning the occupant would switch on their old TV which would, in turn, knock out broadband for the entire village.”

The TV was found to be emitting a single high-level impulse noise (SHINE), which causes electrical interference in other devices.

Mr Jones said the problem has not returned since the fault was identified.[…]

Click here to read the full story at the BBC.

Thank you for sharing this, Jeremy. I can guarantee that if the TV was emitting enough noise to interfere with broadband, it likely also affected the HF, MW, and LW radio bands!

What baffles me is the amount of time it took for the engineers to track down the source in such a small community. A skilled RFI engineer would have likely discovered what was causing the noise by looking at the spectrum analyzer–quite often the signal shape and frequency are indicators. In addition, a little signal “fox hunting” could have proven useful. With that said, noises aren’t always easy to locate and can travel along unexpected paths.

I certainly don’t blame the resident for remaining anonymous!

Guest Post: Spanish TV series “El Ministerio del Tiempo” prominently features Arganda del Rey transmitter site

Many thanks to SWLing Post contributor, Tracy Wood (K7OU), who shares the following guest post:


Arganda del Rey Transmitter Building

SWLing.com now takes “Spot the shortwave radio set in the movie or show” to new heights –

“Spot the shortwave radio station in the TV series”

The former Radio Exterior de España (REE) shortwave transmitter site at Arganda del Rey forms the backdrop for the fourth season of the hit Spanish TV series “El Ministerio del Tiempo” (the Ministry of Time).  The show’s premise – unlike today’s superpowers with their high-tech kinetic weaponry, Spain’s 21st century advantage lies in the nation’s time-traveling skills.

Grand Entrance looking down on actor

The show’s producers tip their hat to the “Centro Emisor de Onda Corta” facility as the Ministry of Time’s “headquarters” relocates this season to this historic broadcast complex.  The large engineering library, old shortwave transmitters, electric rectification hardware and even antenna field form a ready-made stage.

Power rectification units

Up into the early 1990’s Arganda del Rey served as a shortwave and medium wave site.  When all the shortwave services finally migrated over to Noblejas (40 km SE) the Arganda del Rey center continued as the long-standing medium wave location for Radio Nacional de España’s Radio 1 (585 kHz 600kw) and Radio 5 (657 kHz 50kw).  Arganda is now completely inactive with the last transmissions being DRM tests on 1359 kHz with 10 kilowatts. The facility was replaced by Madrid’s Majadahonda site.

Ministerio de Tiempo viewers first get a hint of the radio connection as the character “Alonso de Entrerríos“ (played by José Ignacio “Nacho” Fresneda García) drives towards the new headquarters.  In the background we see the old Radio 5 antenna array.    As the character Alonso approaches the building he looks up and sees the historic “Radio Nacional de España” lettering above the building entrance thus confirming the “Headquarters” original purpose.

Cross Dipole Antenna

A DXer might mistake the Radio 5 array for a shortwave NVIS antenna but instead it is a rare medium-wave cross-dipole arrangement; it was also this antenna that RTVE used for the DRM tests.  The only remaining shortwave antennae at Arganda del Rey are some abandoned log-periodics which support a growing stork colony.

Satellite TVRO hobbyists also may recognize the “Arganda del Rey” municipality.   HISPASAT has established its main uplink facility in a nearby industrial park in this same Madrid suburb.

Radio textbooks and HF transmitter in background…

Many thanks to DXer Pedro Sedano, General Coordinator of the Asociación Española de Radioescuchas (aer.org.es), for confirming the complete abandonment of Arganda del Rey from an RF-perspective.  Also contributing is Ulis Fleming, K3LU, who several months earlier identified a NO-DO newsreel that helped tie the pieces together.

Links

An English-language description of the facility is here:

https://www.esmadrid.com/en/tourist-information/centro-emisor-onda-corta-rne-arganda-rey

“ Located on the Chinchón road, alongside the Arganda Bridge, this former  Radio Nacional de España building, opened in 1954, is today popular for being the new headquarters of The Ministry of Time in its fourth season, the successful TVE series, as well as having appeared in other productions, such as a post office in Velvet Collection (Movistar +), and as the Medical Research Centre in La Valla (Antena 3).”

“The building, now abandoned, forms part of a set of buildings located on both sides of the road  in which RNE had the headquarters of the medium and short-wave radio stations, houses and warehouses, whereby the most representative is this monumental property that was home to the short-wave radio station. “

“The building was designed by the architect, Diego Méndez, following the guidelines of classic architecture from the Franco era. Inside, the entrance hall stands out, a square room decorated with polychromatic marbles, presided by an impressive staircase with two flights of stairs, which is also in marble.  On the first floor, there is all of the machinery for generating the necessary voltage and current for the short-wave transmitters, and the third floor has a library with important telecommunications books and articles.”

LAT-LON:    40°18’47.09″N     3°30’34.95″W

Show Wikipedia URL (in English):

https://en.wikipedia.org/wiki/El_ministerio_del_tiempo

Additional URLs  (all in Spanish)

  1. Series Website:  https://www.rtve.es/television/ministerio-del-tiempo/
  2. A “NO-DO” newsreel showing the 1954 inauguration of two 100-kw shortwave transmitters and the building interior in context. https://www.rtve.es/filmoteca/no-do/not-604/1481595/
  3. Site overview with links to a four-part video tour. https://historiatelefonia.com/2019/07/12/centro-emisor-de-onda-corta-radio-nacional-de-espana-en-arganda-del-rey/
  4. RTVE publicity photos showing building and interior set (with shortwave transmitter in background) https://www.panoramaaudiovisual.com/wp-content/uploads/2020/04/MdT_EdificioRNE_DavidHerranz.jpg https://www.panoramaaudiovisual.com/wp-content/uploads/2020/04/MdT_RNE-archivo1_DavidHerranz.jpg
  5. RTVE press release about the Centro Emisor https://www.rtve.es/rtve/20200401/ministerio-del-tiempo-rueda-integramente-escenarios-naturales-su-cuarta-temporada/2010843.shtml
  6. Site Description (Historic) with Interior/Exterior Views http://archivo.ayto-arganda.es/patrimonio/fp.aspx?id=23
    http://archivo.ayto-arganda.es/patrimonio/BusquedaPatrimonio.aspx?id=23#

— Tracy Wood (K7OU)


Thank you so much, Tracy, for putting this post together!

Now I wish my Spanish comprehension was better as I’d love to watch this show–sounds like a fascinating story line! And the transmitter site is pure radio eye candy! Brilliant!

Post-storm power outage leads Emilio to find the RFI-spewing source of his problems

Storm with lighteningMany thanks to SWling Post contributor, Emilio Ruiz, who shares the following guest post:


Apprehending an RFI-generating monster!

At the beginning of the year, I was sad because, at home, an awful RFI noise appeared. The next few months the noise increase until S9!!. Day and night my receivers and my feelings were so dampened with this terrific RFI–only the lower Broadcast Band (900 to 540 Khz) was relatively immune to it.

Yesterday, we had a storm and the mains electricity service went off, so I connect a 12 volt battery to my RT-749b military surplus transceiver and the received signals were very clean like the “good old days”.

(Above: Listen W1AW loong distant from my QTH in Chiapas Mexico).

When the power electricity come back on, so did the RFI too!!

(Above: W1AW gone)

Remembering the recently publish post in SWLing Post about RFI, I did some testing by
cutting the electricity to my home (the main switch) and the RFI was gone!! So I discovered the RFI lives in my house–not in the outside wires!!

I put batteries in my old shortwave portable radio and searched (like Ghostbusters) all outlets contacts, one by one, connect and disconnected each device.

And I found the guilty party!

Exhibit A: The Mitzu laptop power supply

On December 2019, the power supply of my son’s laptop broke, so I bought a cheap substitute.

The RFI produced by this little monster could be heard at a distance of about 200 meters from my QTH!!! (Much like an old transmitter spark gap–!)

Even this cheap power supply apparently featured ferrite toroids on the wire but turns out it is fake!! It was only a plastic ball!

Exhibit B: Fake toroids!

The wires were also not shielded. No doubt one of the worst switched-mode power supplies I could have purchased.

Exhibit C: The Mitzu RFI generator wire without shield, only pair wires!

I found a old Acer power supply with same specs and I replaced out the RFI monster one.

And now? The shortwave bands are clean again.

(Video: Testing my Kenwood R-600 rx with Radio Exterior de España… plugging and unplug the Mitzu monster RFI generator).

So I wanted to share what happened to me, so perhaps it can be useful for other SWLing Post blog friends.

Watch these little switched mode power supplies from all devices in your home. Replace them if you detect RFI levels that harms SWLing. Consider disconnect all devices (vampire consumption–or phantom loads) if not in use; the radio waves and electric bill will be grateful to you!


WOW! What a difference! Emilio, that was great investigative work on your part. It’s as if that switching power supply was specifically designed to create RFI! No shield and fake toroids? That’s just criminal in my world! 

Thank you so much for sharing your story. Hopefully, this might encourage others to investigate and apprehend their own local RFI monsters!

(And by the way, Emilio, I love that RT-749b military transceiver!)