CA1075771A - Two-way mobile radio voice/data shared communications system - Google Patents

Two-way mobile radio voice/data shared communications system

Info

Publication number
CA1075771A
CA1075771A CA286,385A CA286385A CA1075771A CA 1075771 A CA1075771 A CA 1075771A CA 286385 A CA286385 A CA 286385A CA 1075771 A CA1075771 A CA 1075771A
Authority
CA
Canada
Prior art keywords
voice
base station
data
digital data
mobile
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired
Application number
CA286,385A
Other languages
French (fr)
Inventor
Manohar A. Joglekar
Thomas A. Freeburg
Lawrence R. Pajakowski
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Motorola Solutions Inc
Original Assignee
Motorola Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Motorola Inc filed Critical Motorola Inc
Application granted granted Critical
Publication of CA1075771A publication Critical patent/CA1075771A/en
Expired legal-status Critical Current

Links

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B1/00Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
    • H04B1/38Transceivers, i.e. devices in which transmitter and receiver form a structural unit and in which at least one part is used for functions of transmitting and receiving
    • H04B1/40Circuits
    • H04B1/50Circuits using different frequencies for the two directions of communication

Abstract

ABSTRACT
In control circuitry for a two-way mobile radio voice/data shared communications systems including a plurality of mobile stations with data and voice terminals, a base station, a dispatching station for voice and data, a voice/data processor interposed between the voice/data dispatching station and the base station, there is provided means for enabling transmission and reception of inbound and outbound voice and digital data signals between the base station and the mobile stations selectively to effect full-duplex voice/data shared communications.

Description

C.\1-7G7(iO
10'75'771 PRIOR ART

Significant strides have been made in two-way mobile radio communications systems in recent years to meet the rapidly increasing demand. Typically such a system includes a base station and a plurality of mobile stations organized to provide radio communications services. Such a system is usually allocated with one frequency for inbound signals from the mobile station to the base station and another frequency for the outbound signal from the base station to the mobile stations. Until recently, most of the mobile radio communications need was met by a mobile radio communi-cations systems designed to handle only voice signals.
However, with the emergence of the mobile digital data terminals, in more recent years, it was found possible to combine the mobile voice terminals with the mobile digital data terminal in a mobile station to provide voice as well as digital data communications capabilities. The digital data terminals met the need for the transmission and recep-tion of written messages. This provided significant flex-ibility in mobile radio communications services in that it eliminated the need for a person to be present to receive incoming messages and freed him to tend to other tasks.
This is especially found useful in the police two-way radio communications systems~ For a detailed description of a mobile station that provides both the voice and digital data capabilities as described~ one may refer to the U.S. Patent No. 3,906,445 assigned to the present assignee.

10'75~771 However, prior art voice/data shared two-way mobile radio system is capable of operating only in a simplex mode, as far as the applicants are aware. Also, it has been found that the demand placed on the channel capacity of the system was compounded when digital data signal transmission was added. This was in addition to the fact that, as it were, already the communications handling capability of the system was often taxed to the limit to handle voice communications.
So when the data terminals were added to the mobile stations, the capability of the channel was further taxed and throughput capacity of the system was taxed to the limit.

SUMMARY OF THE INVENTION

It is an object of the present invention to provide an improved mobile radio digital and voice shared communications system.
It is another object of the present invention to provide a full duplex voice/data shared radio communications system.
It is still another object of the present invention to increase throughput capacity of mobile radio communications system.
It is yet another object of the present invention to increase the reliability of the mobile radio communications system.
It is still another object of the present invention to combine two-way mobile radio voice systems with digital systems with minimum amount of changes so that they operate as a single integrated system.
It is yet further object of the present invention to provide improved data/voice shared two-way radio communi-cations systems wherein the message integrety is maintained.

I C.~1-767G0 ~ .
75'~71 ' ` It is still another object of the present invention to provide a two-way mobile radio system wherein human fatigue involved in the use of the system is minimized.
It is yet another object of the present invention to provide a two-way radio communications system wherein the data communications and voice communications is provided in a duplex mode without interfering with each other.
The foregoing and other objects of the invention are obtained by providing a control circuitry in the base station of the communications system that permits or inhibits transmission o~ digital data and voice signals selectively in a way that enables the system to operate in a full duplex mode of operation.
According to a feature of the present invention there is provided a circuitry which inhibits transmission of inbound digital data from the mobile to the base station while an inbound voice signal is being transmitted from a mobile station to the base.
According to another feature of the present invention, there is provided a control circuitryithat inhibits outbound digital data transmission when an outbound voice signal-is being transmitted from the base station to a mobile station or vice versa. In this instance the circuitry still permits inbound transmission of voice or digital signal from the mobile station to the base station.

More particularly, there is provided:
A control circuitry for a two-way mobile radio voice/data shared communications system includinga plurality of mobile stations with data ana voice terminals, a base station, a dispatching station for voice and data, a voice/data processor interposed between the voice/data dispatching station and the base station, said control circuitry including means for enabling the base station to receive the inbound voice signal from a 10'~5771 mobile station and rebroadcast the inbound voice signal to the other mobile stations, means responsive to the inbound voice signal for inhibiting transmission of digital data signal from any of the mobile terminals to the base station, and means for independently transmitting outbound digital data or voice signal from the dispatching station.

The foregoing and other objects and features of the present invention will be made clearer from the foregoing detailed description of an illustrative embodiment of the present invention in conjunction with the accompanying drawings.

cM~7676n 1~:)75771 BRIEF DESCRIPTION OF THE DRAWINGS

Figure l shows a basic system block diagram of the two-way mobile radio voice~data shared system of the present invention.
Figure 2 shows a detailed functional logic block diagram of the control circuitry in the base station that enables the system to operate in a full duplex mode.

DETAILED DESCRIPTION

As shown in Fig. l a mobile radio communications system includes a plurality of mobile stations (ll, 12) each of which may include a mobile radio transceiver for transmitting and receiving RF digital data and voice terminals coupled to the tranceiver. The system includes a base station 21 for transmitting and receiving voice or digital data to and from the mobile stations. The base station 21 is coupled, via suitable paths 22, to a communications processor 23 that includes a control network commonly known as a radio control -chassis 25. The chassis 25 is interposed between the base station and the dispatcher's voice 27 and digital data 29 consoles. Different paths 24a, 24b, 24c, 24d are used to couple the dispatcher's console 27 for voice transmission, reception, takeover or override control and dispatching function as well known. The digital data console may be in the form of CRT or teletypewriter or the like. The communi-cations processor 23 is usually coupled, via a suitable conventional link 31, as illustrated in Fig. l, to a data base 30 for providing data sought by mobiles and dispatchers.
In a typical application where the aforedescribed mobile radio com~unications is used by law enforcement agencies such as police departments: a police officer travelling in a car equipped with the mobile station may :~0~75771 request certain data from the computer data base. This, he does by keying in an inquiry at the mobile data terminal requesting an information to the data base. The inquiry is appropriately modulated, by a carrier frequency, fl, received, demodulated and sent to the control processor and thence to the dispatcher console and to the data base. The response tc the querry is transmitted back to the mobile station carried by the outbound carrier, f2, and the answer is displayed on the display means. Voice communications between a voice terminal and dispatcher takes place in a similar manner between the dispatcher and mobile stations.
There are certain problems associated with prior art mobile two-way radio voice/data shared communications systems.
Although they are not apparent, they are very real and they impose on the mobile radio communications system severe constraints, especially on their throughput capacities.
This is largely due to the fact that the mobile radio systems of the aforementioned type must operate within a particular frequency allocated for it by regulatary agencies such as, the Federal Communications Commission and that, heretofore, the systems have been designed to operate on simplex mode.
This can be appreciated by the fact that inbound channel carrier frequency, fl, and an outbound channel carrier frequency, f2, are used by all of the mobile stations associated with and serviced by the base station. Typically in the actual environment, more often than not, more than one mobile station tries to transmit voice or data signals to the base station at a given instant, while at the same instant, the dispatcher may demand the channel, f2, to transmit data or voice. Inasmuch as the same frequency channel frequencies (fl~ f2) are used by all of the inbound _ 5 _ CM-767~0 and outbound data and voice signals, unless control is exercised the signal channels will be a garbled mixture of signals and cause failure of the system to provide effective communication. Various queing techniques are used to overcome or sequence demands for the channel that take place simultan-eously. However, this does not handle nor is concerned with the task of increasing the throughput.
The kind of duplex communication needed for in the two-way mobile voice/data shared systems to operate in a full duplex mode will now be highlighted by specific situations that the systems encounter in operation in handling signal transmission.
A situation is this: Suppose an inbound voice message is coming in from a mobile station to the base station.
While the voice is coming, transmission of any other voice or digital data message from any other inbound mobile terminals to the base station must be inhibited. At the same time, however, the system must be capable of transmitting outbound digital data or voice messages.
Another situation is this: Suppose an inbound digital data is coming in from a mobile. When this happens, the system must be able to inhibit transmission of any other digital data or voice from any of the mobile stations to the base station. However, in this instance, voice override should be provided so that the dispatcher can handle emergency and other situations. This feature is incidentally required by the governmental agencies. In this instance also, outbound digital data as well as voice transmission must be permited while inbound data is coming in.
Still another situation is when outbound voice is being transmitted from a base station to a mobile station. In 10~75771 this case, the system must be capable of transmitting the voice signals to all of the mobile stations, as generally provided. In addition, the system must be capable of inhibit-ing the transmission of digital data from the base station to the mobile stations when the voice signal is being trans-mitted from the base to the mobile stations. This is so because the same frequency is used for both the transmission of digital data as well as voice from the base to the mobile stations. Also while the voice signal is going out, the system must also permit transmission of digital data from any of the mobile stations to the base station.
Still another situation is where outbound digital data is being sent out from the base station to a mobile station.
The system must be capable of inhibiting transmission of voice as the outbound digital data are being transmitted to a mobile station. However, a voice override feature must be also provided as in the preceding situation. In this situa-tion, while digital data is being sent out, the system must also permit any of the mobile stations to transmit voice or data messages to the base station and enable the base station to receive them.
A conventional two-way mobile radio communications system is not capable of providing all of the communications tasks set forth above. Restated, no conventional voice/data shared two-way mobile radio communications system is capable of rendering two-way mobile voice/data shared communications services in a full duplex mode as described in the four situations described above as far as the present inventors are aware.
Figure 2 illustrates an inventive control circuitry of the present invention that enables the two-way radio communication C~-767~0 5'~ ~1 f systems to operate in a full duplex mode to pro~-ide the r.--aforementioned communications tasks. Before the operation of the control circuitry is described, functions of certain -functional block elements, especially those added to the existing conventional systems, of the control circuitry ;-i will be described.
Referring to Fig. 2, there is shown a continuous tone codes squelch system detector 51, hereinafter referred to r also as CTCSS detector. The function of the CTCSS detector is to detect inbound voice transmission from a mobile station equipped with a CTCSS line encoder. A CTCSS encoder is a generally known circuitry which generates a signal in a subaudible region indicating that a voice signal is about to be transmitted and is present during the entire voice trans-mission. For a more detailed description of such a CTCSS
encoder, one may refer to Electrical Industries Association Specification RS 220. Typically, aforementioned conventional CTCSS squelch detector takes about 130 milliseconds to -detect the presence of CTCSS code from the time it is presented ~r.
to the base station first. ' ' -As is generally known, carrier squelch detector 53 is provided in a carrier squelch contact circuitry 54 to detect the presence of RF carrier and usually the detector is provided in the receiver itself. Its function is similar to that of '~
. . ''~;
CTCSS squelch detector except to handle carrier.
Data operated squelch circuit 55 detects the presence of digital data messages in the incoming signal coming from a mobile station equipped with a data squelch encoder. Its typical detect time is 30 milliseconds and one may refer to a more detailed d~scription of a data operated squelch ~
circuit in U.S. Patent No. 3,939,431 assigned to the present ~___ assignee. Inhibit tone encoder 57 is an encoding circuitry ;, B 8 - ~ ,r which generates an encoded signal to tell the mobil stations that there is an inbound data or voice signal and tell the mobiles stations not to send in any other data message. The tone inhibit signal as indicated by an inhibit tone detector provided in each of the digital data terminals disables the digital data terminals in the mobile stations so that they do not send out digital data while the mobile station is receiving the inhibit tone. This inhibit tone encoder is actuated to generate the inhibit code when inbound voice or inbound digital data is detected.
Voice CTCSS line encoder 59 is used to generate a signal to tell mobile stations that there is an inbound voice present from a mobile station to the base station.
With the voice CTCSS encoder actuated, an inbound voice signal is rebroadca5t and heard by all of the mobil,e stations.
So the base station acts as a repeater to repeat and broadcast the incoming inbound voice message to all of the mobile stations.
The rest of the functional blocks of the control circuitry at a base shown in figure 2 is a well-known conventional type and will not be described separ~tely. But their functions will be evident from the following description.
Now the operation of the control circuitry of'the present invention provided in the data base station will be provided. The operat'ion will be described in the context of the four situations described hereinabove in handling the communications tasks.
First, suppose there is an,inbound voice signal from a mo~ile station to the base station. The voice signal comes into the receiver 65 and is sent to the dispatcher via audio path 56 and line driver 96 and c~ications processor 23 un~Pr the control of the CTCSS ~lch detector 51 and inbound activity enc~der 58 in a oonventional m~er. me ~ice CTCSS code is also detected by the CTCSS ~ elch detector 51. In _ g _ cM-7676n turn, the CTCSS squelch detector provides an output which actuates inhibit tone encoder 57 via an OR gate 67 and the normal repeater push-to-talk 72 via a conventional squelch ga,te 69 and OR gate 71. The normal repeater 72 in turn causes voice CTCSS encoder 59 to be enabled via an OR gate 73. With squelch gate 59 activated, the inbound voice signal is transmitted through the path 56, a switch 70 provided in the squelch gate 69, and thence to audio circuits 75 and thence to transmitter 77, as generally known.
With the voice CTCSS encoder and inhibit tone encoder 57 activated in the aforementioned manner, the transmitter sends out an inhibit tone signal and voice CTCSS signal and rebroadcasts the inbound voice signal to the mobile stations via squelch gate 69 and audio circuits 75 and transmitter 77. In this manner the base station functions as an audio repeater and-thereby broadcasts the incoming voice signal from a mobile station to all of the mobile stations. While this is taking place, the voice CTCSS and inhibit tone signals are sent from the base station to the other mobiles and the mobiles to inhibit all other mobile stations from transmitting voice or data.
Also, digital data signal can be transmitted from the base . ..
station via a line driver 78 and transmit voice/data audio circuit 75 from the dispatcher's consble 29 (Fig. 1). The system will interrupt the re-transmission of the incoming -vo-ice signal, as done in a conventional system, when the ; voice override feature is required.
The second situation is where digital data is ~eing ` transmitted from a data terminal of a mobile station to the bàse station. The inbound data is received by the receiver 65 and its presence is detected by the data operated squelch circuitry 55. Circuitry 55 in turn actuates the inhibit tone encoder 57 to generate inhibit tone signal and the normal push-to-tal~ or repeater 72 via gate 71 to transmit the incoming digital signal to the transmitter 77 of the .
-- 10. --base station. Thus, incoming data signal is transmitted back to the mobile stations. Persons at the mobile stations will detect the presence of rebroadcast digital data signal, in the form of a hushing noise, although they will not be able to decipher the data signal content. This enables the persons in the mobile stations to realize that a mobile station is transmitting a digital message to the base station and alert them not to interfere. So they will not interrupt the inbound data transmission taking place unless an emergency situation exists. When an emergency exists, a person at a mobile station can cut in and override data signals. This is a well-known repeater operation of the system so that the dispatcher can interrupt and send out voice signals to mobile stations. Note that the digital data is re-transmitted without the addition of the voice CTCSS signal.
This allows the circuitry in the mobile radio to be arranged so that the user can hear the presence of the rebroadcast digital data only when he pulls out or unhooks his microphone and tries to transmit a voice signal. When he does this, he hears a hushing sound signifying to him that an inbound digital data from a base station is being rebroadcast by the base station.
The third situation is where an outbound voice signal goes out from a base station to a mobile station. The voice signal comes from the dispatcher's voice console 27 via radio control chassis 25. The voice signal actuates a conventional voice push-to-talk circuit 82 and circuit 82 in turn actuates voice CTCSS line encoder 59 to enable voice terminals in the mobile stations. The voice signal from the base station is transmitted via a voice/data normal audio circuit 75 and transmitter 77. The dispatcher's voice is C~ 76760 1~7577i , .

then heard by all of the people at mobile stations. While --the foregoing is taking place, the mobile stations can still send an inbound data or voice from any one of the mobile stations. Transmission of data from the base to the mobile is inhibited however by the radio control chassis function shown in Fig. 1. ~__ The fourth situation is when an outbound digital data is sent out to a digital data terminal from the dispatcher's console 29 or data base 30 circuit. The presence of outbound data is detected by the data push-to-talk circuit 80. The digital data signal is permitted to go out via the transmit voice/data normal audio circuits 75 and the transmitter 77.
The voice/data communications processor 23 is designed so that a dispatcher can interrupt and send out a voice signal via the line driver 78 and transmit voice/data audio circuit 75 and transmitter 77. This interrupts data transmission and the voice CTCSS encoder 59 sends a signal to all mobiles signifying that there is now a voice message present. When the dispatcher terminates his voice transmission, then the data transmission is resumed. This i;'S a built-in transmission ~
arrangement that gives voice preference over data transmission - * ~v in a data/voice shared two-way radio communication system wherein the channel frequency is basically allocated to serve primarily for voice transmission. While the digital data is going out, incoming voice as well as incoming digital signal is permited to come in via rèceiver 65 and line driver 96 and thence to voice/data processor and thence to ` ~`
the dispatcher's console or data base.
As described hereinabove, a data operated squelch detector 55 and CTCSS squelch 51 detector, voice CTCSS F

~...
". .,~.

1()75771 encoder 59 and inhibit tone encoder 57 are used in an advan-tageous manner in the control circuitry of the base station to enable a two-way mobile voice/data shared two-way radio communications system to operate in a full duplexed mode as described hereinabove which has not been possible heretofore.
In addition, the present invention provides the following advances to the art. Thus, for example, the throughput of the system is significantly increased by permitting the system to operate so that, while an inbound data coming in, a voice signal can go out and vice versa. This increases the throughput capacity of the system. There is no prior art two-way system which is capable of combining data and voice transmission in this manner.
The increase in the throughput capacity is also obtained by the fact that the data operated squelch circuit in the control circuitry is faster than CTCSS squelch decoder. The data operated squelch circuit of the aforedescribed U.S.
Patent 3,939,431 is found to require 30 milliseconds detection time as opposed to 120 millisecond detect time required by the conventional CTCSS squelch detector 51. When projected over many number of mobile stations of a system utilizing an allocated channel of limited bandwidth, savings in time taken for setting up communication paths is very significant.
This in turn increases throughput of the system very signifi-cantly.
While the present invention is described in the context of an embodiment thereof hereinabove, other changes and modifications may be by persons of ordinary skill without departing from the spirit and scope of the present invention.

Claims (5)

THE EMBODIMENTS OF THE INVENTION IN WHICH AN EXCLUSIVE PROPERTY
OR PRIVILEGE IS CLAIMED ARE DEFINED AS FOLLOWS:
1. A control circuitry for a two-way mobile radio voice/data shared communications system including a plurality of mobile stations with data and voice terminals, a base station, a dispatching station for voice and data, a voice data processor interposed between the voice/data dispatching station and the base station, said control circuitry including means for enabling the base station to receive the inbound voice signal from a mobile station and rebroadcast the inbound voice signal to the other mobile stations, means responsive to the inbound voice signal for inhibiting transmission of digital data signal from any of the mobile terminals to the base station, and means for independently transmitting outbound digital data or voice signal from the dispatching station.
2. The control system according to claim 1, including means for enabling the base station to receive an inbound digital data from a mobile station and rebroadcasting the inbound digital data to other mobile stations in the absence of the inbound voice signal, means responsive to the inbound digital data for inhibiting transmission of any digital data from any other mobile station, and means for overriding the rebroadcasting of the inbound digital data in order to permit transmission of voice signals to the mobile stations from the dispatching station.
3. The control circuitry according to claim 2, in-cluding means for sending out an outbound voice signal from the base station to the mobile stations, means responsive to the outbound voice signal for inhibiting the transmission of digital data from the base station to the mobile station while the outbound voice signal is being transmitted from the base station to the mobile stations, and means for permitting transmission of digital data or voice from any of the mobile stations to the base station independently of transmission of outbound voice signal.
4. The circuitry according to claim 1, including means for permitting transmission of digital data to a mobile station from the base station, and means for overriding the outbound digital data transmission to permit voice trans-mission from the dispatching station to the mobile stations while permitting transmission of inbound voice or digital data signals from any of the mobile stations to the base sta-tion.
5. The control circuitry according to claim 1, including means for sending out an outbound voice signal from the base station to the mobile station, means respon-sive to the outbound voice signal for inhibiting the trans-mission of digital data from the base station to the mobile station while the outbound voice signal is being transmitted from the base station to the mobile stations, and means for permitting transmission of digital data or voice from any of the mobile stations to the base station independently of transmission of outbound voice signal.
CA286,385A 1976-10-21 1977-09-09 Two-way mobile radio voice/data shared communications system Expired CA1075771A (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US05/734,493 US4131849A (en) 1976-10-21 1976-10-21 Two-way mobile radio voice/data shared communications system

Publications (1)

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CA1075771A true CA1075771A (en) 1980-04-15

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US (1) US4131849A (en)
JP (1) JPS5832540B2 (en)
AU (1) AU505790B2 (en)
CA (1) CA1075771A (en)
DE (1) DE2745295C2 (en)
GB (1) GB1560159A (en)

Families Citing this family (80)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
NL7806618A (en) * 1978-06-20 1979-12-27 Philips Nv SATELLITE COMMUNICATION SYSTEM FOR VOICE AND TELEGRAPHY.
FR2430143A1 (en) * 1978-06-27 1980-01-25 Commissariat Energie Atomique MULTIPLEXED HERTZIAN LINK DEVICE
US4317218A (en) * 1980-03-26 1982-02-23 General Electric Company Arrangement for remote control of repeater stations
US4399555A (en) * 1980-04-28 1983-08-16 Bell Telephone Laboratories, Incorporated Cellular high capacity mobile radiotelephone system with fleet-calling arrangement for dispatch service
US4430742A (en) 1981-11-20 1984-02-07 Motorola, Inc. Data muting method and apparatus for radio communications systems
US4517561A (en) * 1982-07-28 1985-05-14 Motorola, Inc. Selective call, paging and priority signalling system
IL68988A (en) * 1982-07-28 1986-08-31 Motorola Inc Multiple unit register modelled radio communication system capable of voice and data communications
JPS59100659A (en) * 1982-11-30 1984-06-09 Sharp Corp Wireless phone
US4495647A (en) * 1982-12-06 1985-01-22 Motorola, Inc. Digital voice storage mobile
US4468813A (en) * 1982-12-06 1984-08-28 Motorola, Inc. Digital voice storage system
US4608699A (en) * 1982-12-27 1986-08-26 Motorola, Inc. Simulcast transmission system
JPS6022038U (en) * 1983-07-20 1985-02-15 株式会社ケンウッド Transmitter/receiver control device
US4642633A (en) * 1983-08-05 1987-02-10 Motorola, Inc. Individual simulcast station control system
US4772887A (en) * 1983-08-05 1988-09-20 Motorola, Inc. Individual simulcast station control decoder
US4510595A (en) * 1983-10-03 1985-04-09 At&T Bell Laboratories Modified time-division transmission technique for digital mobile radio systems
DE3337646C2 (en) * 1983-10-17 2001-07-05 Daimlerchrysler Aerospace Ag Radio network with a variety of mobile stations
DE3337648A1 (en) * 1983-10-17 1987-02-26 Licentia Gmbh Radio network with a multiplicity of mobile stations
DE3337643A1 (en) * 1983-10-17 1987-03-12 Licentia Gmbh Radio network with a multiplicity of mobile stations
US4654881A (en) * 1984-01-04 1987-03-31 Motorola, Inc. Remote control system having symmetrical tone, send/receive signaling circuits for radio communications
US4627098A (en) * 1984-01-04 1986-12-02 Motorola, Inc. Automatic gain control for a remote control system having symmetrical send/receive signaling circuits
DE3412508A1 (en) * 1984-04-03 1985-10-10 Industronic, Industrie-Electronic Gmbh & Co Kg, 6980 Wertheim DEVICE FOR TRANSMITTING ELECTRICAL SIGNALS, ESPECIALLY IN THE LONG-WAVE AREA
US4635285A (en) * 1984-04-12 1987-01-06 Motorola, Inc. Communication system with voice priority for remote stations
JPS6146635A (en) * 1984-08-11 1986-03-06 Fujitsu Ltd Data transmission line ensuring system
JPS61171256A (en) * 1985-01-25 1986-08-01 Nec Corp Interruption dialing system in data transmission
US4663765A (en) * 1985-02-01 1987-05-05 General Electric Company Data muting method and apparatus for audo-digital communications systems
US4680749A (en) * 1985-05-15 1987-07-14 General Electric Company Duplex radio transceiver having improved data/tone and audio modulation architecture
US4788711A (en) * 1985-11-25 1988-11-29 Cellular Communications Corporation Apparatus and method for a cellular freeway emergency telephone service
US4901348A (en) * 1985-12-24 1990-02-13 American Telephone And Telegraph Company Data transmission security arrangement for a plurality of data stations sharing access to a communication network
CA1318402C (en) * 1986-05-16 1993-05-25 Kouzou Kage Signal communication capable of avoiding an audible reproduction of a sequency of information signals
EP0259683B1 (en) * 1986-08-25 1993-07-28 Nec Corporation Terminal station of a radio communication network capable of effectively using radio channels assigned to the network
US4817192A (en) * 1986-10-31 1989-03-28 Motorola, Inc. Dual-mode AFC circuit for an SSB radio transceiver
US4955083A (en) * 1986-10-31 1990-09-04 Motorola, Inc. Dual mode radio transceiver for an SSB communication system
US4852086A (en) * 1986-10-31 1989-07-25 Motorola, Inc. SSB communication system with FM data capability
US4905234A (en) * 1987-06-03 1990-02-27 General Electric Company Apparatus and method for transmitting digital data over a radio communications channel
US5125102A (en) * 1987-06-03 1992-06-23 Ericsson Ge Mobile Communications Inc. Trunked radio repeater system including synchronization of a control channel and working channels
US4926496A (en) * 1987-08-14 1990-05-15 General Electric Company Method and apparatus for infrequent radio users to simply obtain emergency assistance
US5274837A (en) * 1987-06-03 1993-12-28 Ericsson Ge Mobile Communications Inc. Trunked radio repeater system with multigroup calling feature
US4905302A (en) * 1987-06-03 1990-02-27 General Electric Company Trunked radio repeater system
US4903262A (en) * 1987-08-14 1990-02-20 General Electric Company Hardware interface and protocol for a mobile radio transceiver
US5175866A (en) * 1987-06-03 1992-12-29 Ericcson Ge Mobile Communications Inc. Fail-soft architecture for public trunking system
US5274838A (en) * 1987-06-03 1993-12-28 Ericsson Ge Mobile Communications Inc. Fail-soft architecture for public trunking system
US4821292A (en) * 1987-06-03 1989-04-11 General Electric Company Adaptive limiter/detector which changes time constant upon detection of dotting pattern
US4835731A (en) * 1987-08-14 1989-05-30 General Electric Company Processor-to-processor communications protocol for a public service trunking system
US4939746A (en) * 1987-06-03 1990-07-03 General Electric Company Trunked radio repeater system
US5265093A (en) * 1987-08-14 1993-11-23 Ericsson Ge Mobile Communications Inc. Hardware interface and protocol for a mobile radio transceiver
US5086506A (en) * 1987-08-14 1992-02-04 General Electric Company Radio trunking fault detection system with power output monitoring and on-air monitoring
US5109543A (en) * 1987-08-14 1992-04-28 General Electric Company Hardware interface and protocol for a mobile radio transceiver
US5206863A (en) * 1987-08-14 1993-04-27 General Electric Company Processor-to-processor communications protocol for a public service trunking system
US5128930A (en) * 1987-08-14 1992-07-07 General Electric Company Processor-to-processor communications protocol for a public service trunking system
US4825457A (en) * 1988-04-25 1989-04-25 Lebowitz Mayer M Cellular network data transmission system
AU3750689A (en) * 1988-05-11 1989-11-29 E.F. Johnson Company High speed data interface for land mobile communication system
US4995055A (en) * 1988-06-16 1991-02-19 Hughes Aircraft Company Time shared very small aperture satellite terminals
US5117501A (en) * 1988-08-08 1992-05-26 General Electric Company Dynamic regrouping in a trunked radio communications system
US5077828A (en) * 1988-09-01 1991-12-31 General Electric Company RF channel expansion in a trunked radio communications system
DE3841464C2 (en) * 1988-12-09 1998-04-30 Schlafhorst & Co W Textile machine with units for maintenance and / or operation of the work units
US5020076A (en) * 1990-05-21 1991-05-28 Motorola, Inc. Hybrid modulation apparatus
DE4118992A1 (en) * 1991-06-08 1992-12-10 Aeg Mobile Communication MOBILE PHONE ARRANGEMENT
NZ243007A (en) * 1991-06-19 1995-02-24 Ericsson Telefon Ab L M Radio telephony: digital speech codec provided at regional stations for analog transmissions
US5408680A (en) * 1992-08-11 1995-04-18 Ericsson Ge Mobile Communications Inc. Single channel autonomous digitally trunked RF communications system
US5392460A (en) * 1993-04-23 1995-02-21 Nokia Mobile Phones Ltd. Dual mode radiotelephone terminal selectively operable for frequency modulated or phase modulated operation
DE4412023B4 (en) * 1994-04-07 2005-03-10 Deutsche Telekom Ag Method and arrangement for receiving encoded transmitted information
DE4415734C1 (en) * 1994-05-04 1995-02-16 Siemens Ag Method for providing subscriber services
CA2154825A1 (en) * 1994-09-09 1996-03-10 Lars H. Mucke Dual mode radiotelephone modulator
JP3128685B2 (en) * 1995-06-08 2001-01-29 富士通株式会社 Mobile device, regional information center, regional information providing system, and regional information providing method
US5896560A (en) * 1996-04-12 1999-04-20 Transcrypt International/E. F. Johnson Company Transmit control system using in-band tone signalling
US6049720A (en) * 1996-04-12 2000-04-11 Transcrypt International / E.F. Johnson Company Link delay calculation and compensation system
US5991309A (en) * 1996-04-12 1999-11-23 E.F. Johnson Company Bandwidth management system for a remote repeater network
US6044268A (en) * 1997-07-16 2000-03-28 Telefonaktiebolaget Lm Ericsson Ab System and method for providing intercom and multiple voice channels in a private telephone system
US6009553A (en) * 1997-12-15 1999-12-28 The Whitaker Corporation Adaptive error correction for a communications link
US6381570B2 (en) 1999-02-12 2002-04-30 Telogy Networks, Inc. Adaptive two-threshold method for discriminating noise from speech in a communication signal
US7196659B1 (en) 1999-05-07 2007-03-27 Garmin Corporation Combined global positioning system receiver and radio
US7330150B1 (en) 1999-05-07 2008-02-12 Garmin Corporation Combined global positioning system receiver and radio
US6643512B1 (en) 1999-09-14 2003-11-04 Motorola, Inc. Method and apparatus for spanning operation of a cellular telephone
KR100356310B1 (en) * 2000-04-19 2002-10-12 주식회사 제이콤 Method and apparatus for transmitting data by ctcss
US7142900B1 (en) 2001-11-01 2006-11-28 Garmin Ltd. Combined global positioning system receiver and radio
KR100862292B1 (en) * 2001-12-14 2008-10-13 엘지전자 주식회사 Method for share of between mobile terminal
US6781962B1 (en) 2002-02-26 2004-08-24 Jetque Apparatus and method for voice message control
US20040266355A1 (en) * 2003-06-26 2004-12-30 Jany-Yee Hsu Method for eliminating irritating noise at the end of communication for a walkie talkie
US7925320B2 (en) 2006-03-06 2011-04-12 Garmin Switzerland Gmbh Electronic device mount
JP2007329878A (en) * 2006-06-09 2007-12-20 Canon Inc Remote control system

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2378298A (en) * 1943-03-12 1945-06-12 Press Wireless Inc Composite-modulation radio service system
US2731622A (en) * 1952-12-26 1956-01-17 Motorola Inc Lock-out system
US3281789A (en) * 1962-11-02 1966-10-25 Frederick P Willcox Multiple remote interrogated information system
JPS5517532B2 (en) * 1973-01-31 1980-05-12
US3906445A (en) * 1974-10-21 1975-09-16 Motorola Inc Alphanumeric terminal for a communications system

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JPS5832540B2 (en) 1983-07-13
JPS5352301A (en) 1978-05-12
DE2745295A1 (en) 1978-04-27
AU2903477A (en) 1979-03-29
DE2745295C2 (en) 1985-02-21
AU505790B2 (en) 1979-11-29
US4131849A (en) 1978-12-26
GB1560159A (en) 1980-01-30

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