EP0963129A2

Cell layout with concurrent sector and time slot selection

Abstract

In a radio communication system repeatedly using the same frequency, each base station and terminal station have directional antennas respectively, and a base station has direction-determining patterns for setting a direction of an antenna according to a timing, the adjacent base stations each using the same frequency use different direction-determining patterns from each other, and remote base stations repeatedly use the same direction-determining patterns. The direction-determining pattern has a correlation between a timing obtained by equally dividing a frame for a communication line by a number of direction-determining patterns and each antenna direction, and a communication slot is allocated based on a timing decided according to the table to a communication line with a terminal station positioned at a particular direction.

EP0963129A2, drawing sheet 1
Sheet 1 of 19

Term

Term ended

Projected expiry passed 19 February 2019, 7.6 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

7 claims: 3 independent, 4 dependent

  1. 1
    A radio communication system with a directional antenna provided in each base station (b1 to b17) and a means for setting a direction of the antenna for each communication slot, said radio communication system repeatedly using radio waves at the same frequency;wherein a plurality of direction-determining patterns (pattern 1 to 6) are prepared in each base station;a base station (b1) selects a first direction-determining pattern (pattern 1) among the plurality of direction-determining patterns;each base station (b5, b7, b8, b11, b12, b14) adjacent to said base station (b1) selects a direction-determining pattern different from said first direction-determining pattern (pattern 1);and each remote base station (b6, b15, b16) repeatedly uses said first direction-determining pattern (pattern 1), whereby the adjacent base stations (b5, b7, b8, b11, b12, b14) avoid using the same antenna direction at the same time.
  2. 5
    A radio communication system with a directional antenna provided in each base station (b1 to b13) and a means for setting a direction of the antenna for each communication slot, said radio communication system repeatedly using radio waves at the same frequency;wherein a number of directivity segregation (Seg) is set to an integer more than 2, and a base station (b1 to b17) has a means for selecting a directivity segregation number as a natural number smaller than the number of directivity segregation, each of base stations adjacent to the base station has a means for selecting a directivity segregation number different from the first directivity segregation number, and each of remote base stations can repeatedly select the first directivity segregation number;and a base station (b1 to b13) has, for the purpose of allocating a communication slot to a terminal station, a means for obtaining sector numbers as natural numbers into which an angle of a radio wave to a terminal station is classified;a means for obtaining, by combining said sector number with the directivity segregation number of said base station, allocation-target slots different from each other;and a means for allocating slots to terminal stations around each of the allocation-target slots.
  3. 6
    A radio communication system with a directional antenna provided in each base station and a means for setting a direction of the antenna for each communication slot, said radio communication system repeatedly using radio waves at the same frequency;wherein a number of directivity segregation (Seg) is set to an integer more than 2, and said base station (b1 to b13) has a means for selecting a directivity segregation number as a natural number smaller than the number of directivity segregation, each of base stations adjacent to the base station has a means for selecting a directivity segregation number different from the first directivity segregation number, and each of remote base stations can repeatedly select the first directivity segregation number;and a base station (b1 to b13) has, for the purpose of allocating a communication slot (U1 to Un) to a terminal station, a means for obtaining allocation-target slots (t1 to t6) different from each other by combining an angle of a radio wave to a terminal station with a directivity segregation number of the base station;and a means for allocating slots to terminal stations around each of the allocation-target slots (t1 to t6).