Cellular digital mobile radio system and method of transmitting

Pulse or digital communications – Equalizers – Automatic

Patent

Rate now

  [ 0.00 ] – not rated yet Voters 0   Comments 0

Details

375267, 455442, H04B 704, H04B 726

Patent

active

RE0360171

ABSTRACT:
The invention relates to a cellular digital mobile radio system including base stations (B.sub.m, B.sub.n) and mobile stations (MS.sub.1, MS.sub.2) with transmitters and receivers. The invention also relates to a method of transmitting message information digitally between mobile and base stations in such a system. In accordance with the invention, at least two base station transmitters (B.sub.ma, B.sub.mb, B.sub.na, B.sub.nb) at a given transmitting distance from each other are assigned to each of certain cells (C.sub.m, C.sub.n) within a restricted geographical area. The base station transmitters which are assigned to the same cell transmit digitally modulated radio signals within the same frequency range at least partially simultaneously to the mobile stations of the cell. The radio signals from different base station transmitters associated with the same cell are digitally modulated with the same message information to the mobile stations in the cell. Different base station transmitters (9A, 9B) preferably transmit the digitally modulated radio signals with the same message information to a given mobile station with a given mutual transmission time shift. Here, the transmission time shift is selected individually for each mobile station, such that corresponding digitally modulated radio signals with the same message information to a given mobile station from different base station transmitters arrive practically simultaneously at the mobile station.

REFERENCES:
patent: 2745953 (1956-05-01), Young, Jr.
patent: 3819872 (1974-06-01), Hamrick
patent: 4057758 (1977-11-01), Hattori et al.
patent: 4097804 (1978-06-01), Yamaguchi et al.
patent: 4112257 (1978-09-01), Frost
patent: 4152647 (1979-05-01), Gladden et al.
patent: 4211894 (1980-07-01), Watanabe et al.
patent: 4222115 (1980-09-01), Cooper et al.
patent: 4255814 (1981-03-01), Osborn
patent: 4308429 (1981-12-01), Kai et al.
patent: 4383332 (1983-05-01), Glance et al.
patent: 4398063 (1983-08-01), Hass et al.
patent: 4475246 (1984-10-01), Batlivala et al.
patent: 4490830 (1984-12-01), Kai et al.
patent: 4516267 (1985-05-01), Krinock
patent: 4516269 (1985-05-01), Krinock
patent: 4596042 (1986-06-01), Stangl
patent: 4633519 (1986-12-01), Gotoh et al.
patent: 4642633 (1987-02-01), Dunkerton et al.
patent: 4644560 (1987-02-01), Torre et al.
patent: 4667202 (1987-05-01), Kammerlander et al.
patent: 4675863 (1987-06-01), Paneth et al.
patent: 4696051 (1987-09-01), Breeden
patent: 4696052 (1987-09-01), Breeden
patent: 4697260 (1987-09-01), Grauel et al.
patent: 4698839 (1987-10-01), DeVaney et al.
patent: 4715048 (1987-12-01), Masamura
patent: 4718081 (1988-01-01), Brenig
patent: 4718109 (1988-01-01), Breeden
patent: 4723266 (1988-02-01), Perry
patent: 4737978 (1988-04-01), Burke et al.
patent: 4759051 (1988-07-01), Han
patent: 4765753 (1988-08-01), Schmidt
patent: 4771488 (1988-09-01), Koohgoli et al.
patent: 4811380 (1989-03-01), Spear
patent: 4850032 (1989-07-01), Freeburg
patent: 4852090 (1989-07-01), Borth
patent: 4856048 (1989-08-01), Yamamoto et al.
patent: 4901307 (1990-02-01), Gilhousen et al.
patent: 4930140 (1990-05-01), Cripps et al.
patent: 4955082 (1990-09-01), Hattori et al.
patent: 4984247 (1991-01-01), Kaufmann et al.
patent: 5022049 (1991-06-01), Abrahamson et al.
patent: 5048059 (1991-09-01), Dent
patent: 5056109 (1991-10-01), Gilhousen et al.
patent: 5091942 (1992-02-01), Dent
patent: 5095531 (1992-03-01), Ito
patent: 5101501 (1992-03-01), Gilhousen et al.
patent: 5103459 (1992-04-01), Gilhousen et al.
patent: 5109390 (1992-04-01), Gilhousen et al.
patent: 5124698 (1992-06-01), Mustonen
patent: 5126748 (1992-06-01), Ames et al.
patent: 5128959 (1992-07-01), Bruckert
patent: 5179571 (1993-01-01), Schilling
patent: 5257283 (1993-10-01), Gilhousen et al.
patent: 5265119 (1993-11-01), Gilhousen et al.
patent: 5267261 (1993-11-01), Blakeney, II et al.
patent: 5267262 (1993-11-01), Wheatley, III
patent: 5280472 (1994-01-01), Gilhousen et al.
patent: 5383219 (1995-01-01), Wheatley, III et al.
patent: 5437055 (1995-07-01), Wheatley, III
patent: 5452473 (1995-09-01), Weiland et al.
patent: 5461639 (1995-10-01), Wheatley, III et al.
patent: 5475870 (1995-12-01), Weaver, Jr. et al.
patent: 5485486 (1996-01-01), Gilhousen et al.
patent: 5490165 (1996-02-01), Blakeney, II et al.
patent: 5509035 (1996-04-01), Teidemann, Jr. et al.
patent: 5513176 (1996-04-01), Dean et al.
patent: 5519761 (1996-05-01), Gilhousen
patent: 5528593 (1996-06-01), English et al.
"Multi-Path Equilization for Digital Cellular Radio Operating at 300 KBIT/S"; K Raith, J-E Stjernvall, J. Uddenfeldt; 36th IEEE Vehicular Technology Conference, pp. 268-272; Dallas, Tex., U.S.A., May 1986.
NTG-Fachberichte, Bewegliche Funkdienste, Vortrage der NTG-Fachtagung vam 25. bis 27 Nov. 1985, in Munich, "Gleichkanalfunksysteme fur die Frequenzokonische Versorgung Grosser Gebiete", Berndt Heynisch, pp. 41-46, VDE-VERLAG GmbH, Berlin.
Radio Test Performance of a Narrowband TDMA System, J-E Stjernall, Bo Hedberg and S. Ekemark, IEEE Vehicular Conference, Tampa, Fla., U.S.A., Jun. 1987.
Elektrizitatswirtschaft, Jg. 80(1981), Heft 6, pp. 187-198, "Quasissynchroner Gleichwellenfunk-ein Gleichkanalfunk-Verfahren zur Erhohung der Erreichbarkeit in Mobilfunknetzen".
Nakajima, A., Advanced Mobile Communication Network Based on Signaling System No. 7, International Switching Symposium (1987).
Turin, G., Introduction to Spread-Spectrum Antimultipath Techniques and Their Application to Urban Digital Radio, Proceedings of the IEE, vol. 68, No. 3 (1980).
Monsen, P., Digital Transmission Performance on Fading Dispersive Diversity Channels, IEEE Transactions on Communications, vol. COM-21, No. 1 (1973).
Bennett, M. et al., A Hand-Off Algorithm for Cellular Radio Based on Reed-Solomon Coding Dialog Abstract from IEEE Colloquium on `Mobile Radio Networks` (1988).
Wolf Herold, "Changing Radio Zones of Fixed Stations by Mobile Subscribers", Communication form AEG-Telefunken Wireless Communications translation enclosed.!.
Richard H. Frenkiel, "A High-Capacity Mobile Radiotelephone System Model Using a Coordinated Small-Zone Approach", IEEE Transaction on Vehicular Technology, vol. VT-19, No. 2, pp. 173-177 (1970).
J. und Kaplan, G. S. Shefer, "An X-Band Vehicle-Location System", IEEE Transaction on Vehiclular Technology, vol. VT-21, No. 4, pp. 117-120 (Nov., 1972).
Takahiro Morinaga et al., "Automatic Selection of Fixed Receiving Stations in Mobile Radio Systems", Review of the Electrical Communication Laboratory, vol. 16, Nos. 5-6, pp. 374-384 (May-Jun. 1968).
W. Herold, "A Small-Zone Radio Telephone System with Code Division Multiple Access", Proc. Internat. Zurich Seminar, F6 1-4 (1974).
K. D. Schenkel, "Entwurf Eines Integrierten Digitalen Nachrichtensystems mit Veilfachzugriff fur ein Beliebig Verzeigtes Breitbandnetz", AEU 27, pp. 168-176 (1973).
J. J. Spilker, Jr., et al., "The Delay-Lock Discriminator-An Optimum Tracking Device", Proc. Inst. Radio Engrs. 43, pp. 1403-1416 (1961).
J. R. Sergo et al., "Analysis and Simulation of a PN Synchronization System", Transact. Inst. Electr. Electron. Engrs. Com-18, pp. 676-679 (1970).
W. Herold, "Fangverhalten einer Phasenregelschleife mit Sagezahn-Komparator", AEU 25, pp. 226-230 (1971).
Y. Okumura et al., "Field Strength and its Variability in VHF in UHF Land-Mobile Radio Service", Ref. Electr. Commun. Lab. (Japan) 15, pp. 825-873 (1968).
William G. Figel et al., "Vehicle Location by a Signal Attenuation Method", Transact. Inst. Elect. Electron. Engrs. VT-18, pp. 105-109 (1969).
W. Herold et al., "Aufbau und Eigenschaften von Quasiorthogonalen Codekollektiven", AEU 27, pp. 463-470 (1973).
W. Herold, "Nachrichtentechnische Zeitschrift", NTZ, 27, pp. 253-259 (1974).
Richard C. Bernhardt, "User Access in Portable Radio Systems in the Noise Limited Environment", pp. 1-8, Bell Communications Research Inc., Jun. 1987.
Richard C. Bernhardt, "RF Performance of Macroscopic Diversity in Universal Digital Portable Radio Communications: Frequency Reuse Considerations", pp. 65-71, IEEE Conference, Jun. 1986.
International Application No. PCT/SE90/0019

LandOfFree

Say what you really think

Search LandOfFree.com for the USA inventors and patents. Rate them and share your experience with other people.

Rating

Cellular digital mobile radio system and method of transmitting does not yet have a rating. At this time, there are no reviews or comments for this patent.

If you have personal experience with Cellular digital mobile radio system and method of transmitting , we encourage you to share that experience with our LandOfFree.com community. Your opinion is very important and Cellular digital mobile radio system and method of transmitting will most certainly appreciate the feedback.

Rate now

     

Profile ID: LFUS-PAI-O-1415742

  Search
All data on this website is collected from public sources. Our data reflects the most accurate information available at the time of publication.