INTERFERENCE COORDINATION BETWEEN MACROCELL AND SMALL CELL
Provided are methods, corresponding apparatus and computer program products for interference coordination between a macrocell and a small cell. A method comprises receiving respective position information from at least one small-cell base station and at least one macrocell user equipment; calculating a distance between the at least one small-cell base station and the at least one macrocell user equipment based upon the respective position information; and determining, based upon the distance, whether to allow the at least one small-equipment cell base station to reuse radio resources used by the at least one macrocell user equipment. With the embodiments, the interference coordination can be improved and thus interference in small-cell transmission will be diminished due to efficient allocation and usage of the radio resources.
1 - 21 . (canceled)
22 . A method, comprising:
receiving respective position information from at least one small-cell base station and at least one macrocell user equipment;
calculating periodically a distance between the at least one small-cell base station and the at least one macrocell user equipment based upon the respective position information;
determining, based upon the distance, whether to allow the at least one small-cell base station to reuse radio resources used by the at least one macrocell user equipment; and
signaling, responsive to allowing reusing of the radio resources, an indication regarding the radio resources used by the at least one macrocell user equipment to the at least one small-cell base station.
23 . The method as recited in claim 22 , wherein the determining comprises:
comparing the distance with a predetermined threshold; and
determining allowing the at least one small-cell base station to reuse the radio resources if the distance is equal to or greater than the predetermined threshold.
24 . The method as recited in claim 22 , further comprising:
calculating distances between small-cell base stations that have been allowed to reuse the radio resources; and
determining, based upon the distances, allocation of the radio resources between the small-cell base stations.
25 . The method as recited in claim 22 , wherein the at least one small-cell base station comprises one of a femtocell base station and a picocell base station, and wherein one of the small-cell base stations that have been allowed to reuse the radio resources comprises one of a femtocell base station and a picocell base station.
26 . A method, comprising:
receiving position information from at least two small-cell base stations;
calculating a distance between the at least two small-cell base stations; and
determining, based upon the distance, whether to allocate same radio resource to the at least two small-cell base stations.
27 . The method as recited in claim 26 , wherein the determining comprises:
comparing the distance with a predetermined threshold; and
determining allocating the same radio resource to the at least two small-cell base stations if the distance is equal to or greater than the predetermined threshold.
28 . The method as recited in claim 26 , wherein one of the at least two small-cell base stations comprises one of a femtocell base station and a picocell base station.
29 . An apparatus, comprising:
at least one processor and at least one memory including compute program code,
the memory and the computer program code configured to cause the apparatus to perform:
receive respective position information from at least one small-cell base station and at least one macrocell user equipment;
calculate periodically a distance between the at least one small-cell base station and the at least one macrocell user equipment based upon the respective position information;
determine, based upon the distance, whether to allow the at least one small-cell base station to reuse radio resources used by the at least one macrocell user equipment; and
signal, responsive to allowing reusing of the radio resources, an indication regarding the radio resources used by the at least one macrocell user equipment to the at least one small-cell base station.
30 . The apparatus as recited in claim 29 , wherein the determining comprises:
comparing the distance with a predetermined threshold; and
determining allowing the at least one small-cell base station to reuse the radio resources if the distance is equal to or greater than the predetermined threshold.
31 . The apparatus as recited in claim 29 , wherein the apparatus is further caused to:
calculate distances between small-cell base stations that have been allowed to reuse the radio resources; and
determine, based upon the distances, allocation of the radio resources between the small-cell base stations.
32 . The apparatus as recited in claim 29 , wherein the at least one small-cell base station comprises one of a femtocell base station and a picocell base station, and wherein one of the small-cell base stations that have been allowed to reuse the radio resources comprises one of a femtocell base station and a picocell base station.
33 . An apparatus, comprising:
at least one processor and at least one memory including compute program code,
the memory and the computer program code configured to cause the apparatus to perform:
receive position information from at least two small-cell base stations;
calculate a distance between the at least two small-cell base stations; and
determine, based upon the distance, whether to allocate same radio resource to the at least two small-cell base stations.
34 . The apparatus as recited in claim 33 , wherein the determining comprises:
comparing the distance with a predetermined threshold; and
determining to allocate the same radio resource to the at least two small-cell base stations if the distance is equal to or greater than the predetermined threshold.
35 . The apparatus as recited in claim 33 , wherein one of the at least two small-cell base stations comprises one of a femtocell base station and a picocell base station.