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Radio-controlled submarine

A radio-controlled submarine is a scale model of a submarine that can be steered via radio control. The most common form are those operated by hobbyists. These can range from inexpensive toys to complex projects involving sophisticated electronics. Oceanographers and military units also operate radio-controlled submarines.

Dynamic-diving toy submarine being tested in a water tank

Radio transmission through water edit

As the conductivity of a medium increases, the more a radio signal passing through it is attenuated.[1] High frequencies are also attenuated more than low frequencies, and tend to reflect off the surface of the water more. As is well known communication with military submarines uses very low frequency electromagnetic radiation for this reason. Military frequencies are well below allocated hobby radio control bands, but the lowest hobby bands - typically around 27MHz/40MHz - can penetrate several feet of water at short distances, typically less than 45 meters. Penetration at these frequencies is easier in fresh water, but are difficult to impossible in sea water. Modern radio control sets using the 2.4GHz band penetrate water very poorly, and are thus not used by serious divers.

For underwater radio to work, even at these frequencies, the receiving aerial needs to be completely insulated from the surrounding water. Plastic covered wire provides adequate insulation - the aerial need not be held in an airtight container - but the cut end of such wire must be sealed against water ingress. Depending on water conditions, positive control can be maintained at perhaps 3 meters depth.

Since control of model submarines may not be reliable at all times, such models usually carry a variety of apparatus intended to prevent model loss. Fail-safe systems which detect loss of signal and command the submarine to surface, or pressure sensors which limit the depth attained, may be used. Such specialist complexity usually makes a model submarine an expensive item compared to a model surface boat.

Professional or military remote-controlled diving equipment may be controlled via a tether, or by using sound signals. Quite commonly, such equipment has onboard computers which allow autonomous operation following a set path, so continuous communication with the controlling base is not necessary. The advent of small cheap computers such as the Raspberry Pi or Arduino has allowed model submariners to emulate their professional brethren and provide autonomous control in situations where radio transmission or adequate visibility is lacking.

Hobby submarines edit

Dynamic diving edit

Models with dynamic diving are positively buoyant, and will remain on the surface until sufficient thrust is generated over their control surfaces to force them down beneath the water. Dynamic diving models are both the cheapest and simplest designed models available, as complicated buoyancy control systems are replaced by diving planes or thrusters. Dynamic dive models also have the advantage of being able to return to the surface if radio contact is lost, due to their positive buoyancy. However, as they are positively buoyant, such models must maintain sufficient speed while underwater to remain there, and are unable to stop without rising to the surface. Some modelers[who?] may also argue that the speed required to submerge such models is not to scale and that they may dive too quickly.

Static diving edit

Models with static diving have the ability to alter their displacement by taking on or pumping out water. This can be accomplished through the use of a piston, inflatable bladder, or through a ballast tank. Boats that use a ballast tank generally fill the tank by opening a vent at the top, and force the water out by using compressed gas. There are variants that use water pumps for both processes. A liquid gas is dosed into the ballast tank to push water out. "Gas-snort liquid gas" is used to surface the boat in an emergency, otherwise the ballast tank is blown by the use of a snorkel tube at periscope depth and the boat is trimmed to surface to periscope depth with a full ballast tank.

Recirculated compressed air ballast system was originally developed by Darnell from the UK in the 1950s, and this system uses a rubber bladder as the ballast tank. This is filled with compressed air supplied by a small compressor, with the air taken from the water-tight container aft dry space to inflate the bladder.

Another system gaining popularity is the 'snort system'. A ballast tank allows water to enter by releasing a vent valve on the top of the cylinder, allowing the boat to submerge. To surface, a small pump 'snorts' air from the snorkel tube in the conning tower (sail) into the ballast tank, expelling the water. This system is also equipped with a small tank of compressed gas, which in the event of a fail-safe system operating, usually due to loss of radio signal, the gas is released into the ballast tank, surfacing the boat.

In Europe, the piston tank is the ballast system of choice.[clarification needed] These models can become very expensive to build due to the complexity of their ballast systems. In the event of a loss of radio contact while submerged, the boat will most likely sink to the bottom and require manual retrieval, unless equipped with a fail safe system. However, the ability to dive while at a standstill has its advantages, as it can be more precise and scale like than dynamic systems.

See also edit

References edit

  1. ^ Underwater Communication

External links edit

  • The SubCommittee
  • Submarine modelers Forum
  • Explorer sub made from PVC pipe(in Spanish)
  • R/C Model Submarines & Submersible Video Platforms

radio, controlled, submarine, this, article, multiple, issues, please, help, improve, discuss, these, issues, talk, page, learn, when, remove, these, template, messages, this, article, contains, instructions, advice, content, please, help, rewrite, content, th. This article has multiple issues Please help improve it or discuss these issues on the talk page Learn how and when to remove these template messages This article contains instructions advice or how to content Please help rewrite the content so that it is more encyclopedic or move it to Wikiversity Wikibooks or Wikivoyage January 2021 This article relies largely or entirely on a single source Relevant discussion may be found on the talk page Please help improve this article by introducing citations to additional sources Find sources Radio controlled submarine news newspapers books scholar JSTOR January 2021 This article possibly contains original research Please improve it by verifying the claims made and adding inline citations Statements consisting only of original research should be removed January 2021 template removal help template removal help A radio controlled submarine is a scale model of a submarine that can be steered via radio control The most common form are those operated by hobbyists These can range from inexpensive toys to complex projects involving sophisticated electronics Oceanographers and military units also operate radio controlled submarines Dynamic diving toy submarine being tested in a water tank Contents 1 Radio transmission through water 2 Hobby submarines 2 1 Dynamic diving 2 2 Static diving 3 See also 4 References 5 External linksRadio transmission through water editAs the conductivity of a medium increases the more a radio signal passing through it is attenuated 1 High frequencies are also attenuated more than low frequencies and tend to reflect off the surface of the water more As is well known communication with military submarines uses very low frequency electromagnetic radiation for this reason Military frequencies are well below allocated hobby radio control bands but the lowest hobby bands typically around 27MHz 40MHz can penetrate several feet of water at short distances typically less than 45 meters Penetration at these frequencies is easier in fresh water but are difficult to impossible in sea water Modern radio control sets using the 2 4GHz band penetrate water very poorly and are thus not used by serious divers For underwater radio to work even at these frequencies the receiving aerial needs to be completely insulated from the surrounding water Plastic covered wire provides adequate insulation the aerial need not be held in an airtight container but the cut end of such wire must be sealed against water ingress Depending on water conditions positive control can be maintained at perhaps 3 meters depth Since control of model submarines may not be reliable at all times such models usually carry a variety of apparatus intended to prevent model loss Fail safe systems which detect loss of signal and command the submarine to surface or pressure sensors which limit the depth attained may be used Such specialist complexity usually makes a model submarine an expensive item compared to a model surface boat Professional or military remote controlled diving equipment may be controlled via a tether or by using sound signals Quite commonly such equipment has onboard computers which allow autonomous operation following a set path so continuous communication with the controlling base is not necessary The advent of small cheap computers such as the Raspberry Pi or Arduino has allowed model submariners to emulate their professional brethren and provide autonomous control in situations where radio transmission or adequate visibility is lacking Hobby submarines editDynamic diving edit Models with dynamic diving are positively buoyant and will remain on the surface until sufficient thrust is generated over their control surfaces to force them down beneath the water Dynamic diving models are both the cheapest and simplest designed models available as complicated buoyancy control systems are replaced by diving planes or thrusters Dynamic dive models also have the advantage of being able to return to the surface if radio contact is lost due to their positive buoyancy However as they are positively buoyant such models must maintain sufficient speed while underwater to remain there and are unable to stop without rising to the surface Some modelers who may also argue that the speed required to submerge such models is not to scale and that they may dive too quickly Static diving edit Models with static diving have the ability to alter their displacement by taking on or pumping out water This can be accomplished through the use of a piston inflatable bladder or through a ballast tank Boats that use a ballast tank generally fill the tank by opening a vent at the top and force the water out by using compressed gas There are variants that use water pumps for both processes A liquid gas is dosed into the ballast tank to push water out Gas snort liquid gas is used to surface the boat in an emergency otherwise the ballast tank is blown by the use of a snorkel tube at periscope depth and the boat is trimmed to surface to periscope depth with a full ballast tank Recirculated compressed air ballast system was originally developed by Darnell from the UK in the 1950s and this system uses a rubber bladder as the ballast tank This is filled with compressed air supplied by a small compressor with the air taken from the water tight container aft dry space to inflate the bladder Another system gaining popularity is the snort system A ballast tank allows water to enter by releasing a vent valve on the top of the cylinder allowing the boat to submerge To surface a small pump snorts air from the snorkel tube in the conning tower sail into the ballast tank expelling the water This system is also equipped with a small tank of compressed gas which in the event of a fail safe system operating usually due to loss of radio signal the gas is released into the ballast tank surfacing the boat In Europe the piston tank is the ballast system of choice clarification needed These models can become very expensive to build due to the complexity of their ballast systems In the event of a loss of radio contact while submerged the boat will most likely sink to the bottom and require manual retrieval unless equipped with a fail safe system However the ability to dive while at a standstill has its advantages as it can be more precise and scale like than dynamic systems See also editUnmanned underwater vehicle an autonomous vehicle Remotely operated underwater vehicle often via cableReferences edit Underwater CommunicationExternal links editThe SubCommittee Submarine modelers Forum Explorer sub made from PVC pipe in Spanish R C Model Submarines amp Submersible Video Platforms Retrieved from https en wikipedia org w index php title Radio controlled submarine amp oldid 1171348724, wikipedia, wiki, book, books, library,

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