Nova Patents
EP2393230A2

Base station

Abstract

A cellular radio communication system includes a first mobile terminal 300, a base station 200 that performs radio communication with first mobile terminals 300, a second mobile terminal 400, and a second base station 100 that performs radio communication with second mobile terminals 400. In the downlink communication, the base station 200 selects a high data rate mode when the radio interference from the base station 200 to the second mobile terminals 400 that are located close to an edge of a communication area 110 of the second base station 100 is small. The base station 200 selects an interference mitigation mode in the downlink communication when the radio interference from the base station 200 to the second mobile terminals 400 that are located close to the edge of the communication area 110 of the second base station 100 is large. Thus, inter-cell interference control can be performed in collaboration with base stations 100, 200 in the radio communication system without having communication interface between the base stations 100, 200.

EP2393230A2, drawing sheet 1
Sheet 1 of 29

Term

Projected expiry 1 June 2031.

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

20 claims: 12 independent, 8 dependent

  1. 1
    A base station performing radio communication with a first mobile terminal (300), wherein the base station (200) estimates radio interference given by the base station (200) to a second mobile terminal (400) that performs radio communication with a second base station (100);wherein the base station (200) selects a high data rate mode when the radio interference given by the base station (200) to the second mobile terminal (400) that is located close to an edge of a communication area of the second base station (100) is small;and wherein the base station (200) selects an interference mitigation mode when the radio interference given by the base station (200) to the second mobile terminal (400) that is located close to the edge of the communication area of the second base station (100) is large.
  2. 5
    The base station according to at least one of claims 1 to 4, wherein, in the high data rate mode, the base station (200) assigns downlink communication resources that are continuous in the frequency domain to the first mobile terminal (300);and wherein, in the interference mitigation mode, the base station (200) assigns downlink communication resources that are not continuous in a frequency domain to the first mobile terminal (300).
  3. 6
    The base station according to at least one of claims 1 to 4, wherein, in the high data rate mode, the base station (200) performs downlink data transmission to the first mobile terminal (300) by using spatial multiplexing;and wherein, in the interference mitigation mode, the base station (200) performs downlink data transmission to the first mobile terminal (300) by using time-space diversity.
  4. 7
    The base station according to at least one of claims 1 to 4, wherein, in the high data rate mode, the base station (200) does not apply frequency hopping to downlink communication resources to be assigned to the first mobile terminal (300);and wherein, in the interference mitigation mode, the base station (200) applies frequency hopping to downlink communication resources to be assigned to the first mobile terminal (300).
  5. 8
    The base station according to at least one of claims 1 to 4, wherein, in the high data rate mode, the base station (200) performs downlink data transmission to the first mobile terminal (300) by using a first power spectrum density;wherein, in the interference mitigation mode, the base station (200) performs downlink data transmission to the first mobile terminal (300) by using a second power spectrum density;and wherein the first power spectrum density is greater than the second power spectrum density.
  6. 10
    The base station according to at least one of claims 1 to 9, wherein when the interference mitigation mode is selected according to the radio interference given by the base station (200), the base station (200) stops using the interference mitigation mode and selects the high data rate mode when the second mobile terminal (400) is not present in the vicinity of the base station (200).
  7. 11
    A base station performing radio communication with a first mobile terminal (300), wherein radio interference used as a reference is given to the base station (200) by a second mobile terminal (400) that performs radio communication with a second base station (100);wherein the base station (200) selects a frequency diversity mode for the first mobile terminal (300) when the radio interference to the base station (200) from the second mobile terminal (400) that is located close to an edge of a communication area of the second base station (100) is small;and wherein the base station (200) selects the time diversity mode for the first mobile terminal (300) when the radio interference to the base station (200) from the second mobile terminal (400) that is located closed to the edge of the communication area of the second base station (100) is large.
  8. 15
    The base station according to at least one of claims 11 to 14, wherein, in the frequency diversity mode, the base station (200) sets a first retransmission target number in the data uplink data transmission from the first mobile terminal (300);wherein, in the time diversity mode, the base station (200) sets a second retransmission target number in the uplink data transmission from the first mobile terminal (300);and wherein the first retransmission target number is smaller than the second retransmission target number.
  9. 16
    The base station according to at least one of claims 11 to 14, wherein, in the frequency diversity mode, the base station (200) does not apply frequency hopping to uplink communication resources assigned to the first mobile terminal (300);and wherein, in the time diversity mode, the base station (200) applies frequency hopping to uplink communication resources assigned to the first mobile terminal (300).
  10. 17
    The base station according to at least one of claims 11 to 14, wherein, in the frequency diversity mode, the base station (200) assigns uplink communication resources that are continuous in a frequency domain, to the first mobile terminal (300);and wherein, in the time diversity mode, the base station (200) assigns uplink communication resources that are not continuous in a frequency domain to the first mobile terminal (300).
  11. 18
    The base station according to at least one of claims 11 to 14, wherein, in the frequency diversity mode, the base station (200) allows the first mobile terminal (300) to perform uplink data transmission by using a first power spectrum density;wherein, in the time diversity mode, the base station (200) allows the first mobile terminal (300) to perform uplink data transmission by using a second power spectrum density;and wherein the second power spectrum density is greater than the first power spectrum density.
  12. 19
    The base station according to at least one of claims 11 to 18, wherein when the time diversity mode is selected according to the radio interference to the base station (200) from the second mobile terminal (400), the base station (200) stops using the time diversity mode and selects the frequency diversity mode when the second mobile terminal (400) is not present in the vicinity of the base station (200).