French Railway Signalling
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The current French railway signalling system is in force on the
Réseau Ferré de France Réseau ferré de France (, , abbr. RFF) was a French company which owned and maintained the French national railway network from 1997 to 2014. The company was formed with the rail assets of SNCF in 1997. Afterwards, the trains were operated by ...
(now SNCF Réseau) since 1930, when the ''code Verlant'' was applied.


History

Historically, each private
railway company A rail transport company is a company active within the rail industry. It can be: * a manufacturing company, * a rail transport operations, railway undertaking providing services through operating rolling stock, * a railway infrastructure manager ...
designed and used its own
signals A signal is both the process and the result of Signal transmission, transmission of data over some transmission media, media accomplished by embedding some variation. Signals are important in multiple subject fields including signal processin ...
. However, during the
First World War World War I or the First World War (28 July 1914 – 11 November 1918), also known as the Great War, was a World war, global conflict between two coalitions: the Allies of World War I, Allies (or Entente) and the Central Powers. Fighting to ...
the interpenetration of trains between networks had increased, so that it became necessary to create a new unified signals specification. A commission was set up in May 1926, directed by Eugène Verlant of the PLM. The Verlant commission submitted its report at the end of 1927. The new code of signals received the approval of the Ministry of Public Labour on 1 August 1930. Conversion to the Verlant code was completed only at the end of 1936, except on the network of Alsace-Lorraine where it was completed later, because of the unusual pre-existing signalling. The Verlant code was very innovative, based on simple principles: * Mainly based on color light signalling, which thereafter simplified the installation of the
automatic block signalling Automatic block signaling (ABS), spelled automatic block signalling or called track circuit block (TCB ) in the UK, is a railroad communications system that consists of a series of Railway signal, signals that divide a railway line into a seri ...
. * Light signals used three basic colors: red (stop), yellow (to announce stop or limited speed), green (clear). This color code was already applied by many foreign companies. It was also used for traffic lights. * Simplification: it presented only the most imperative indications (except in special cases).


Placement of signals

Signals are normally placed on the side of the line: on the left if the trains run on the left. However, in the
Département In the administrative divisions of France, the department (, ) is one of the three levels of government under the national level (" territorial collectivities"), between the administrative regions and the communes. There are a total of 101 ...
s of
Bas-Rhin Bas-Rhin () is a department in Alsace which is a part of the Grand Est region of France. The name means 'Lower Rhine', referring to its lower altitude among the two French Rhine departments: it is downstream of the Haut-Rhin (Upper Rhine) de ...
,
Haut-Rhin Haut-Rhin (); Alsatian: ''Owerelsàss'' or '; , . is a department in the Grand Est region, France, bordering both Germany and Switzerland. It is named after the river Rhine; its name means Upper Rhine. Haut-Rhin is the smaller and less pop ...
and
Moselle The Moselle ( , ; ; ) is a river that rises in the Vosges mountains and flows through north-eastern France and Luxembourg to western Germany. It is a bank (geography), left bank tributary of the Rhine, which it joins at Koblenz. A sm ...
, trains normally run on the right and so signals are placed on the right. This area was part of Germany from 1870 to 1918; trains run on the right in Germany and the railways were built during that period. When the area became French again in 1918, the railway network was almost complete, and trains ran on the right. Reversing the direction would be too expensive, in particular for interlocking, so circulation and signals remained on the right. In several stations and on several line sections, when the local layout requires it, signals can be set on the right. They are then equipped with a white arrow indicating the way to which they are addressed. On some double-track line sections equipped with "permanent counter-track installations" (IPCS), signals are placed normally on the right for counter-track circulations. No white arrows are used. In fact, entering the wrong way is confirmed by a luminous ''counter-track entrance board'' (TECS), which, when lit, indicates that the following signals are placed on the right (on the left for Alsace and Moselle). Similarly, a ''counter-track exit board'' (TSCS) indicates the return to normal running, with signals placed on the normal side. Where trains run on the left, the hand-held stop signals (red flag, stop marker or lantern with red light) are presented on the left or at the center of the relevant track. If there is a platform by the track, they can be presented on the side of the platform.


Permissiveness and aspects

In
automatic block signalling Automatic block signaling (ABS), spelled automatic block signalling or called track circuit block (TCB ) in the UK, is a railroad communications system that consists of a series of Railway signal, signals that divide a railway line into a seri ...
, the signalling device is generally one of three categories: * Non-permissive signals are ''absolute'' signals; they protect routes or points, or delimit sidings. Such signals can be recognized by their "Nf" (, Non-passable) plate. In their most restrictive aspect, they cannot be passed except under exceptional circumstances; * Permissive signals regulate traffic to prevent trains from rear-ending the next one ahead. They bear plates such as "F" (, Passable) or "PR" (, Restricted Permissiveness). Non-permissive signals can also temporarily become permissive, in such case their "Nf" plate is accompanied with a small white light (). The most restrictive aspect of a permissive signal allows the train to proceed after a certain number of conditions have been met. * Distant signals only display deferred orders and require the driver to adapt their speed in order to be able to safely stop at the next point or signal. "A" (, Warning) or "D" (, Disk) plates are example of distant signals. In general, the signalling device comprises: * a 'block free' signal (green), meaning that the next block is clear or, in the case of a distant signal, that the next signal is also green; * Warning signals or speed limits (yellow) requiring the driver to slow the train and especially to be able to stop before the next stop signal; * Stop signals (red) require the train to stop. These signals are supplemented by "indicator signals" () showing speed limits, slow-down orders and reminders to go slow on a diverging route, various indications about the track layout (number, dead ends or garage) the signs of electrical section, numbers of radio channels. Mobile and temporary signals (e.g. construction), are used to complement permanent fixed signals. Some signals are specific to manoeuvres. These include various types of signals: * Hand signals, * Mechanical signals, * Lights, * Acoustic signals * Signal board. Respect of signals is an imperative ''condition sine qua non'' of safety. The first section of the safety regulations of the SNCF indicates that "any official, whatever his rank must obey passively and immediately any signals that are presented."


Block systems

The block system is based on breaking a line into block sections. The block sections on a line between two stations are part of the block system. Non interlocked manual blocks: For safety reasons, non-interlocked manual blocks are used only on double track. Interlocked manual blocks: In the case of a single track, interlocking is used in manual blocks to avoid an error resulting in a head-on collision. Automatic blocks: Two types of automatic block are in common use in France. BAL (''Bloc Automatique Lumineux, Automatic Luminous Block'') is used on high traffic lines with block lengths of about 1500 m and BAPR (''Bloc Automatique à Permissivité Restreinte, Automatic Block with Restricted Permissiveness'') is used in low traffic areas with block lengths up to 15 km. In both cases they are similar to the UK
automatic block signalling Automatic block signaling (ABS), spelled automatic block signalling or called track circuit block (TCB ) in the UK, is a railroad communications system that consists of a series of Railway signal, signals that divide a railway line into a seri ...
. Normally a train can only enter a block if it is free. The block is a track section delimited by signals, whose length depends on the distance needed for a train to stop or slow down, in the worst conditions on the portion of line under consideration. When traffic density is low, the blocks may be longer. In future, the blocks may be mobile and follow the progress of the train (virtual blocks, not materialized on the ground and calculated continuously by an integrated onboard system). This will optimize the use of the line and reduce the distance needed between successive trains. This
moving block In railway signalling, a moving block is a signalling block system where the blocks are defined in real time by computers as safe zones around each train. This requires both knowledge of the exact location and speed of all trains at any given t ...
system is already in use on the central section of the RER line A between Nanterre-Préfecture and Vincennes. The trackside signals are still in place but are turned off at the approach of a train whose mobile system signalling (SACEM) is confirmed in operation. They are turned on if problems arise. The current signalling system has already reduced the spacing between trains from 3 to 2 min. But this is still too long on the busiest lines (suburban, and high-speed lines). In comparison, the moving blocks of the RER A allow a separation of only 90 seconds between trains at full speed.


Wayside signals

Here are some examples of signals used on the French network. Signals and signs give information and special instructions to train drivers. For simplicity, only the most common elements are presented here.


Stop signals and warning signals


Speed limits


Shunting


Stopping points in stations


Indications for electric locomotives


Other signs


Cab signalling

With the arrival of the
TGV The TGV (; , , 'high-speed train') is France's intercity high-speed rail service. With commercial operating speeds of up to on the newer lines, the TGV was conceived at the same period as other technological projects such as the Ariane 1 rocke ...
, and its operating speeds well over 200 km/h, trackside signalling had to be abandoned in favour of cab-signalling, using track to cab communication technology known as Transmission Voie-Machine (TVM).


ETCS

This system is intended to replace the different national signalling systems.


Bibliography

* * * * *


External links


French signalling

French signalling section of The Signal Page

The European Railway Signalling Server




* ttps://web.archive.org/web/20080420101702/http://www.carreweb.fr/dsp/kvbrsc.html Speed control by beacons and SNCF in-cab signal repeaters (''in french'')
SNCF signalling (''in french'')


{{Railwaysignalling
France France, officially the French Republic, is a country located primarily in Western Europe. Overseas France, Its overseas regions and territories include French Guiana in South America, Saint Pierre and Miquelon in the Atlantic Ocean#North Atlan ...