Information transmission system
5 claims: 5 independent, 0 dependent
- 1A system for the transmission of information by electrical means with a high level of security, in particular a radio relay system, in which a plurality of transmission channels (K) are provided, as are monitoring- and switch-over devices which, in the event of disturbances in the transmission channel, initiate a stand-by operation, characterised by a stand-by transmitter (hot stand-by) (SH) in the operating state which is connected to a control device (StE) and which can be selectively connected to the individual transmission channels via switching elements (U,V), driven by the control device in the base band, and in the event of a disturbance after resulting setting at the frequency ofthetransmitter (S) of the disturbed transmission channel at the transmitter output, is connected to the channel branching filter (KF) of the respective transmission channel and the disturbed transmitter is cut off from this channel branching filter, and further characterised by a correspondingly controlled stand-by receiver (hot stand-by) (EH) at the receiving end with an analogous switching arrangement (U,V) following the channel branching filters (KF). 1. System zur Übertragung von Informationen auf elektrischem Wege mit hoher Sicherheit, insbesondere Richtfunksystem, bei dem mehrere Übertragungskanäle (K) vorgesehen sind, sowie Überwachungs- und Umschalteinrichtungen, die bei Störungen in einem Übertragungskanal eine Ersatzschaltung veranlassen, gekennzeichnet, durch einen im Betriebszustand befindlichen, mit einer Steuereinrichtung (StE), verbundenen Ersatzsender (Heißersatz) (3H), der über von der Steuereinrichtung angesteuerte Schaltelemente (V,U) im Basisband wahlweise an die einzelnen Übertragungskanäle anschaltbar ist und im Störungsfall nach erfolgter Einstellung auf die Frequenz des Senders (5) des gestörten Übertragungskanals am Senderausgang an das Kanalweichenfilter (K,F) des betreffenden Übertragungskanals angeschaltet und der gestörte Sender von diesem Kanalweichenfilter abgetrennt wird und ferner durch einen entsprechend gesteuerten Ersatzempfänger (Heißersatz) (EH) auf der Empfangsseite mit analoger Schalteranordnung (U,V) nach den Kanalweichenfiltern (K,F). 1. Système pour la transmission d'informations par voie électrique, avec grande sécurité, en particulier système de transmission par faisceaux hertziens, dans lequel sont prévus plusieurs canaux de transmission (K), ainsi que des installations de surveillance et de commutation qui, dans le cas de perturbations dans le canal de transmission, provoquent la réalisation d'un circuit de remplacement, caractérisé par un émetteur de remplacement (émetteur de remplacement chaud) (34) qui se trouve à l'état de fonctionnement, qui est relié à un dispositif de commande (StE) et qui est susceptible d'être relié, par l'intermédiaire d'éléments de commutation (V, U) commandés par le dispositif de commande, dans la bande de base, au choix aux différents canaux de transmission, et qui branche, dans le cas d'une perturbation et après réglage sur la fréquence de l'émetteur (S) du canal de transmission perturbé, à la sortie de l'émetteur, au filtre d'aiguillage des canaux (KF) du canal de transmission considéré, l'émetteur perturbé étant séparé de ce filtre d'aiguillage des canaux, ainsi que par un récepteur de remplacement (récepteur de remplacement chaud), (EH) commandé de façon correspondante, sur le côté réception, avec un dispositif de commutation analogue (U, V), après les filtres d'aiguillage des canaux (KF).
- 2A system as claimed in claim 1, characterised in that the switching elements (V,U, Fig. 1) comprise a distributor switch (V) in the output arm of the stand-by transmitter (SH) and the stand-by receiver (EH) and of a switch (U) in the respective path of the transmission channels (K), all of which are driven by the control device (StE). 2. System nach Anspruch 1, dadurch gekennzeichnet, daß die Schaltelemente (V,U Fig. 1) aus einem Verteilerschalter (V) im Ausgangszweig des Ersatzsenders, (GH) und des Ersatzempfängers (EH) und einem Schalter (U) im jeweiligen Leitungsweg der Übertragungskanäle (K) bestehen, die alle von der Steuereinrichtung (StE) angesteuert werden. 2. Système selon la revendication 1, caractérisé par le fait que les éléments de commutation (V, U, Fig. 1) sont constitués par un commutateur-répartiteur (V) situé dans la branche de sortie de l'émetteur de remplacement (SH) et de récepteur de remplacement (EH) et par un commutateur (U) situé dans la voie de conduction concerné des canaux de transmission (K), qui sont tous attaqués par le dispositif de commande (StE).
- 3A system as claimed in claim 1, characterised in that the switching elements (S" S2, Sll, S'2, Fig. 2) each comprise a mechanical switch (Si, S11) arranged in the path of the transmission channels, and an assigned, driven mechanical change-over switch (S2, S12) which is connected to the stand-by transmitter (SH). 3. System nach Anspruch 1, dadurch gekennzeichnet, daß die Schaltelemente (S1, S2, S11, S12, Fig. 2) aus jeweils einem im Leitungsweg der Übertragungskanäle angeordneten mechanischen Schalter (S1, S11) und jeweils einem diesem zugeordneten, mit dem Ersatzsender (Sh) verbundenen, angesteuerten mechanischen Umschalter (S1, S12) bestehen. 3. Système selon la revendication 1, caractérisé par le fait que les éléments de commutation (Si, S2, S'1' S12, Fig. 2) sont chacun constitués par un commutateur mécanique (S" Sll) disposé dans la voie de conduction des canaux de transmission et par un commutateur-inverseur mécanique et commandé (S2, S12) associé au précédent et relié à l'émetteur de remplacement (SH).
- 4A system as claimed in claim 1, characterised in that the switching elements (Z, Fig. 3) comprise circulators (Z) which can be switched over in respect of their direction of rotation and which are assigned in pairs to each transmission channel, and of which one is located in the path of the transmission channel and the other, with an opposite transmission direction, is connected to the output of the stand-by transmitter and receiver, and that in the event of a disturbance the transmission direction of the two circulators is reversed by reversing the polarity of the direction of the magnetic field. 4. System nach Anspruch 1, dadurch gekennzeichnet, daß die Schaltelement (Z, Fig. 3) aus drehrichtungsgeschalteten Zirkulatoren (Z) bestehen, die jedem Übertragungskanal paarweise zugeordnet sind und von denen der eine jeweils im Leitungsweg des Übertragungskanals liegt und der andere mit gegensinniger Übertragungsrichtung mit dem Ausgang des Ersatzsenders bzw. -empfängers verbunden ist und daß im Störungsfall durch Umpolung von deren Magnetfeldrichtung die Übertragungsrichtung beider Zirkulatoren umgekehrt wird. 4. Système selon la revendication 1, caractérisé par le fait que les éléments de commutation (Z, Fig. 3) sont constitués par des circulateurs (Z) branchés en sens de rotation, lesdits circulateurs étant associés par paires à chaque canal de transmission et parmi lesquels l'un est dans la voie de conduction du canal de transmission alors que l'autre est relié, avec un sens de transmission opposé, à la sortie de l'émetteur de remplacement ou du récepteur de remplacement, et par le fait que dans le cas d'une perturbation, et par inversion de la polarité des sens de leurs champs magnétiques, le sens de transmission des deux circulateurs est inversé.
- 5A system as claimed in claim 4, characterised in that for the manual switch-over of the stand-by transmitter and receiver (SH, EH, Fig. 4) to a disturbed transmission channel, prior to the switch-over, an RF-phase synchronisation takes place between the stand-by transmitter and receiver and the transmitter and receiver respectively which are to be replaced, in such manner that the quartz signals (Fq) of the RF-carrier supplies of all the transmitters and receivers which are to be substituted are fed via a distributor switch (V) to the hot stand-by transmitter and receiver respectively and priorto the switch-over operation the hot stand-by carrier supply is phase-synchronised to the appropriate quartz frequency selected by the switch, and all the like-frequency carrier oscillators in the hot stand-by modulator and all the other modulators are phase-synchronised to an oscillator of the appropriate frequency. 5. System nach Anspruch 4, dadurch gekennzeichnet, daß zur manuellen Umschaltung des Ersatzsenders bzw. -empfängers (SH, EH, Fig. 4) auf einen gestörten Übertragungskanal vor der Umschaltung eine RF-Phasensynchronisation zwischen Ersatzender bzw. -empfänger und zu ersetzendem Sender bzw. Empfänger in der Weise erfolgt, daß die Quarzsignale (F9) der RF-Trägerversorgungen aller ersatzschaltenden Sender bzw. Empfänger über einen Verteilerschalter (V) zum Heißersatzsender bzw. -empfänger geführt werden und vor dem Umschaltvorgang die Heißersatzträgerversorgung auf die entsprechende, durch den Schalter ausgewählte Quarz-frequenz phasensynchronisiert wird und alle gleich-frequenten Trägeroszillatoren im Heißersatzmodulator und allen anderen Modulatoren auf einen Oszillator entsprechender Frequenz phasensynchronisiert werden. 5. Système selon la revendication 4, caractérisé par le fait que pour la commutation manuelle de l'émetteur ou du récepteur de remplacement (SH, EH, Fig. 4) sur un canal de transmission perturbé, et avant la commutation, il est procédé à une synchronisation de phase de la radiofréquence entre l'émetteur ou le récepteur de remplacement et l'émetteur ou le récepteur à remplacer, et cela de telle façon que les signaux des quartz (Fq) des alimentations des porteuses de radiofréquence de tous les émetteurs ou récepteurs de commutation de remplacement sont reliées, par l'intermédiaire d'un commutateur-répartiteur (V), à l'émetteur ou au récepteur de remplacement chaud, alors qu'avant le processus de commutation, l'alimentation porteuse des dispositifs de remplacement chaud est synchronisée en phase avec la fréquence correspondante du cristal, sélectionnée par le commutateur et que tous les oscillateurs des porteuses de même fréquencde, dans le modulateur de remplacement chaud et dans tous les autres modulateurs, sont synchronisés en phase à une fréquence correspondant à un oscillateur.
Independent claims5
13 paragraphs, as filed
The invention relates to a system for transmission of information by electrical means with a high safety, in particular radio relay system in which multiple transmission channels are provided, as well as monitoring and switching devices, which cause an equivalent circuit in disturbances in a transmission channel. Such a system is known for example from DE-C-2152721.
In such transmission systems, it is provided that a certain number of transmission channels in each case one or more spare channels are assigned to the exchange. Such spare channels require additional bandwidth, which is not desirable because of the increasing band shortage in microwave bands. Instead, the hot spare from radio fields should now take place with an electronically tunable hot spare.
The invention has for its object to provide a solution to such a transmission system that allows the replacement shift particularly reliably and with little effort on microwave link lines and switches. Furthermore, should it be possible uninterrupted by hand switch.
This object is according to the invention by an in-use state, with a control device associated spare Ender (hot spare), which is connectable via controlled by the control device switching elements in the baseband either to the individual transmission channels and in case of failure after setting the frequency of the transmitter of the turned disturbed transmission channel on the transmitter output to the channel branching filter of the respective transmission channel and the disturbed transmitter is separated from this channel branching filter, and further by a correspondingly gesteurten substitute recipient (hot spare) at the receiving end with analog switch assembly according to the channel switch filters.
Advantageous refinements and developments of the subject of the application are indicated in the dependent claims.
The invention is explained in more detail with reference to exemplary record on shown in the drawing.
Show it<ul><li>FIG. 1, the transmission system comprising transmitting means and receiving means in the block diagram,</li><li>Figs. 2 and 3 partial representations of the transmit side of the switching devices and</li><li>FIG. 4 a partial view of the transmission-side devices for by-hand switch.</li></ul>
FIG. 1 shows the N + 1 hot standby with tunable transmitters and receivers in the block diagram. In this case the devices connected to the transmitting antenna SA transmission channel switch are on the transmission side, the individual associated with the N + 1 switching means spare transmission channels to the individual direction lines RL1, RL2 ... turned on. The individual transmission channels each include a modulator Mo 1, Mo2 ..., a transmitter S1, S2 ..., a switch U1, U2 ... and a channel branching filter KF1, KF2 ... which in the example with the respective direction line RL1, RL2 ... connected. Further, a hot spare a transmitter S<sub>H</sub> sustained branch is provided to which a teinrichtung with the N + 1-Mo Ersatzschal- associated modulator is connected upstream and which is connected to the center tap of a distribution switch V1. The individual terminals of the distribution switch V1 are connected to the transmission channels lying in the switch U1, U2 .... The switches U1, U2 ..., the distribution switch V1 and the hot spare transmitter S<sub>H</sub> are controlled by the control signals of a control device St Ste. The control is with the individual transmitters S1, S2 ... emitted control signals St indicative of the need for a spare transmitter. In the transmitter of a transmission channel failure then this transmission channel is via the control unit StE off and switched the hot standby transmitter to vote on the corresponding frequency on the transmission channel. Transmitting and receiving side are interconnected via a radio field FF. When shown transmission system for space diversity operation an antenna GA for the basic signal and a second antenna DA are provided for diversity signal reception system. Accordingly, each transmission channel of the receiving side is equipped with the facilities for the basic signal and the diversity signal. The reception branches, where the received signals are supplied via the direction lines RL1, RL2 ... or RL11, RL22 ... included, one channel branching filter KF1, KF2 ... or kF11, KF22 ..., a switch U11, U21 ... or U12, U22 ..., a receiver E1, E2 ... for the fundamental signal and a diversity receiver E1<sub>O</sub>, E2<sub>O</sub>..., A combiner Ko1, Ko 2 ... over which the receiver for the basic signal and the diversity signal are respectively output side to each other and the combiners downstream demodulator De, which are connected to the N + 1-Changeover device. The branch for the hot spare receiver consists of a receiver E<sub>H</sub> for the basic signal and a receiver E<sub>Ho</sub> for the diversity signal, the output side are connected via a combiner Ko, where a demodulator De is connected downstream, and each of which a distribution switch V2 and V3 is connected upstream of the individual connections to the lying in the transmission channels switch U11, U21 .. . or U12, U22 ... are performed. A Steureinheit StE controls the receiving end, the hot standby system to the correct RF frequency and further the individual switches in the transmission channels. The input signal M of the Steureinheit StE example includes the message over a Sen derausfall from the transmitting side. At the receiving end, the hot spare circuit is delayed somewhat until a message from the transmitting side is present.
Fig. 2 shows a partial view of the switching devices of the transmitting side which are present on the receiving side in an analog formation. There are for each transmission channel two mechanical switches S1, S2; S11, S12 ... provided, of which the one is arranged in the conduction path S11 of the transmission channels one and the other S1 S2, S12 respectively associated with this and with its middle contact to the output of hot standby transmitter S<sub>H</sub> connected is. These switches (Fig. 1 see.) May be of the control device StE driven. In Fig. 2 shows the case that the transmission channel K2 is switched spare. The signal of the hot standby transmitter S, it passes through the switch S2 in the open for the transmission channel K1 position to switch S12 second transmission channel, which is located in the intended to replace operating position, and the switch S11, which interrupts the pathway of this transmission channel , for channel branching filter KF2 this transmission channel.
Fig. 3 shows a partial view of the example of the transmitting side a further embodiment of the switching devices that are used in the same way, for the receiving side. Compared to the embodiment of FIG. 2 in this case, the mechanical switches are replaced by low-loss electronic switch. They consist of circulators, which are each assigned in pairs to a transmission channel. One of the circulators Z1, Z11 is turned on in the conduction path of the transmission channels, the associated second circulator this Z2, Z12 is respectively on the hot standby transmitter S<sub>H</sub> connected. By reversing the polarity of the magnetic field rotation direction of the circulators is reversed. This reversal of polarity is controlled by the control signals St control unit STE (see. FIG. 1) and causes shut down in case of failure of the disturbed transmitter and the hot standby transmitter is switched on the previous setting of the frequency corresponding to the disturbed transmission channel.
The advantage of this switch is that they are resistant to mechanical switches without contact, particularly low loss and reliable, a soft switching is possible. Opposite PIN switches, for example, they have very small transmission losses. Furthermore, in them is given advantageously also the possibility of an uninterruptible by hand switch.
An embodiment of a hand-switch for the transmitting side is shown in Fig. 4 in a partial view. In this Umschaltaung before microwave switching is an RF-phase synchronization between spare Ender and ersetzendem stations and an uninterrupted, smooth adjustment of the microwave switch. The receiving side needs only to slide over continuous microwave switch and, as the transmission side, the uninterrupted Bb switch. The transmission side phase-locked switching is easily achieved in that the quartz signals fq<sub>i</sub>, fq<sub>2</sub>... The RF carrier supplies all ersatzzuschaltenden stations S1, S2 ... for hot standby transmitter S<sub>H</sub> be conducted. Before Mikrowellenumschaltvorgang the hot spare support supply is phase-synchronized to the appropriate, through the switch V selected crystal frequency. In addition, all modulators including the hot spare modulator fed by an intermediate frequency carrier oscillator.
carried out the phase of fine synchronization to sync isere the television stations, if it is necessary, with a microwave phase detector φ the microwave switch consisting of the circulators Z1, Z2; Z11, Z12 ..., each of which couplers are K1 and K2, K11 or K12 ... upstream, the decoupled signal is supplied to the phase detector φ. The microwave switch controls the output signals (control signals) 01, (p2 of the phase detectors φ a switch between the distributor V and the hot spare transmitter S<sub>H</sub> switched phase shifter of the hot spare support supply. Because of the crystal frequency multiplication factor in the hot spare support supply the quartz phase must be turned only by a few degrees, phase-locked to both channels in the RF layer. to synchronize. After completion of the synchronization, the shock-free RF channel switching to the switches Z1, Z2 takes place; Z11, Z12 ... The limited decoupling of the circuit ensures that during the switching the transmission amplitude never falls over, for example 20 dB, which is compensated at the receiving side by the fade control. The switching speed is controlled by the Magnetfelderzeugeung of the circulators.
3 sheets
Sheet 1 Sheet 2 Sheet 3
11 members in 5 offices
Priority claims4
| Document | Office | Kind | Date |
|---|---|---|---|
| 3232691 | Germany | A | |
| 3232691 | Germany | – | |
| 3232691 | – | – | – |
| DE19823232691 | – | – | – |
Members11
| Document | Office | Kind | |
|---|---|---|---|
| DK398883D0 | Denmark | D0 | |
| DK398883A | Denmark | A | |
| NO833098L | Norway | L | |
| DE3232691A1 | Germany | A1 | |
| EP0104486A2 | European Patent Office (EPO) | A2 | |
| EP0104486A3 | European Patent Office (EPO) | A3 | |
| EP0104486B1This record | European Patent Office (EPO) | B1 | |
| AT34643T | Austria | T | |
| DE3376788D1 | Germany | D1 | |
| NO158649B | Norway | B | |
| NO158649C | Norway | C |
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Numbers
- Publication
- 0104486
- Publication, DOCDB
- 0104486
- Publication, EPODOC
- EP0104486
- Application
- 83108587
- Application, DOCDB
- 83108587
- Application, EPODOC
- EP19830108587
Titles3
- German
- System zur Übertragung von Informationen
- English
- INFORMATION TRANSMISSION SYSTEM
- French
- Système pour la transmission d'informations
Classification
- CPC, 1
- H04B1/74
- IPC, 2
- H04B1 74
- H04B7 155
Designated states5
- Contracting states, 5
- Austria
- Switzerland
- Germany
- Liechtenstein
- Netherlands (Kingdom of the)
