METHODS AND APPARATUS FOR SUPPORTING OPERATOR DEVICE SHARING OF TIME AND FREQUENCY RESOURCES IN A BAND
Methods and apparatus for implementing a spectrum scheduling controller (SSC) are described. The spectrum scheduling controller receives resources requests from operator devices, e.g., access points which can be in the form of base stations. The access points can, and sometimes do, correspond to different operators and/or use different communications technologies. The SSC determines the coverage areas of the operator devices requesting resources and groups them into groups based on the potential for interference, e.g., contour area overlap. Operator devices are synchronized on a frame and/or transmission slot level basis with a frame including multiple slots. A schedule is created allocating slots corresponding to operator devices based on latency and/or data transmission requirements. Device priority can be, and sometimes is, considered when generating a schedule. The schedule allocating resources is communicated to members of an operator device group to which the schedule relates.
1 . A method of operating spectrum scheduling controller (SSC), the method comprising:
determining a device switching guard interval duration based on a distance between a first operator device and a second operator device;
generating a first schedule allocating communications resources to said first and second operator devices, said first schedule allocating uplink slots and downlink slots to said first and second operator devices, said first schedule including a device switching guard interval, of the determined device switching guard interval duration, in a slot, corresponding to a switch between a first slot in the first schedule allocated to the first operator device and another slot in the first schedule allocated to the second operator device; and
communicating the first schedule to the first and second operator devices.
2 . The method of claim 1 , wherein the first and second operator devices are access points.
3 . The method of claim 1 , wherein said first schedule allocates uplink time-frequency resource blocks and downlink time-frequency resource blocks to said first and second operator devices.
4 . The method of claim 1 , further comprising:
determining coverage contours for the operator devices seeking to use spectrum;
determining overlapping coverage contour areas; and
grouping operator devices seeking to use spectrum into one or more groups based on overlap of determined coverage contours for the operator devices, said grouping operator devices including grouping at least a first set of operator devices into a first group for resource assignment purposes, said one or more groups including said first group, said first group including the first operator device and the second operator device; and
wherein operator devices in the first group have overlapping coverage contours.
5 . The method of claim 4 , further comprising:
estimating interference in determined overlapping coverage contour areas; and
grouping operator devices seeking to use spectrum into one or more groups includes:
identifying the first set of operator devices, said first set of operator devices being operator devices which are likely to interfere with each other based on the estimates of interference in the overlapping coverage contour areas.
6 . The method of claim 4 , wherein grouping operator devices seeking to use spectrum into one or more groups includes:
comparing coverage contour area overlaps of one or more pairs of spectrum user devices to a first coverage contour overlap threshold; and
identifying the first set of operator devices, said first set of operator devices being operator devices which are likely to interfere with each other if using shared resources, said first set of operator devices being a group of operator devices which have coverage contour area overlaps with other devices in the first set of operator devices which exceed said first coverage contour overlap threshold.
7 . The method of claim 4 , further comprising:
estimating interference from one operator device to another operator device in a first pair of spectrum user devices; and
wherein grouping operator devices seeking to use spectrum into one or more groups includes:
comparing the estimated interference to a point interference threshold; and
identifying, in response to said comparing determining that the estimated interference is above the point interference threshold, the operator devices in the first pair of operator devices as operator devices of the first group.
8 . The method of claim 4 , further comprising:
estimating multi-device interference from all spectrum user devices in the vicinity of one operator device; and
wherein grouping operator devices seeking to use spectrum into one or more groups includes:
comparing the estimated multi-device interference to a multi-device interference threshold; and
identifying, in response to said comparing determining that the estimated multi-device interference is above the multi-device interference level threshold, the operator devices in vicinity of said one operator device along with the one operator device as operator devices which are likely to interfere if they share a first set of resources.
9 . The method of claim 4 ,
wherein each of the operator devices in said first group of operator devices are time synchronized at least at a slot transmission timing level; and
wherein said first schedule allocates slots and corresponding transmission resources to operator devices in said first group.
10 . The method of claim 4 , wherein said first schedule allocates different downlink slots to the first and second operator devices such that the operator devices do not share the same downlink slots.
11 . The method of claim 10 , wherein said first schedule allocates at least some slots to both the first and second operator devices to be used for uplink transmissions at the same time.
12 . The method of claim 1 ,
wherein each of the operator devices in said first group of operator devices are time synchronized at a slot transmission timing level;
wherein said first schedule allocates different downlink slots to the first and second operator devices such that the operator devices do not share the same downlink slots; and
wherein said first schedule allocates at least some slots to both the first and second operator devices to be used for uplink transmissions at the same time.
13 . The method of claim 1 , wherein the determined device switching guard interval duration is longer the greater the distance is between the first and second operator devices, said determined device switching guard interval duration having a first duration when the distance between the first and second operator devices is a first distance and a second duration when the distance between the first and second operator devices, the second distance being greater than said first distance, said second duration being longer than said first duration.
14 . The method of claim 1 ,
wherein said step of generating the first schedule allocating resources to operator devices in said first group is based on data transmission requirements of at least one of the first and second operator devices, said first schedule including a series of consecutive slots allocated to the first operator device when the first operator device has a data transmission per unit time period exceeding a first threshold; and
communicating the first schedule to the first and second operator devices.
15 . The method of claim 14 , further comprising:
generating an updated schedule including more switching between slot to device allocations thereby shorting the time between transmission opportunities in response to a latency requirement change requiring a shorter latency than was required when the first schedule was generated; and
communicating the updated schedule to the operator devices in the first group.
16 . A spectrum scheduling controller (SSC) comprising:
a receiver;
a transmitter; and
a processor configured to control the SSC to:
determine a device switching guard interval duration based on a distance between a first operator device and a second operator device;
generate a first schedule allocating communications resources to said first and second operator devices, said first schedule allocating uplink slots and downlink slots to said first and second operator devices, said first schedule including a device switching guard interval, of the determined device switching guard interval duration, in a slot, corresponding to a switch between a first slot in the first schedule allocated to the first operator device and another slot in the first schedule allocated to the second operator device; and
communicate the first schedule to the first and second operator devices.
17 . The SSC of claim 16 , wherein the first and second operator devices are access points.
18 . The spectrum scheduling controller (SSC) of claim 16 , wherein said first schedule allocates uplink time-frequency resource blocks and downlink time-frequency resource blocks to said first and second operator devices.
19 . The spectrum scheduling controller (SSC) of claim 16 , wherein said processor is further configured to control the SSC to:
determine coverage contours for the operator devices seeking to use spectrum;
determine overlapping coverage contour areas;
group operator devices seeking to use spectrum into one or more groups based on overlap of determined coverage contours for the operator devices, said grouping operator devices including grouping at least a first set of operator devices into a first group for resource assignment purposes, said one or more groups including said first group, said first group including the first operator device and the second operator device; and
wherein operator devices in the first group have overlapping coverage contours.
20 . A non-transitory machine readable medium including processor executable instructions, which when executed by a processor of a spectrum scheduling controller (SSC), control the SSC to perform the steps of:
determining a device switching guard interval duration based on a distance between a first operator device and a second operator device;
generating a first schedule allocating communications resources to said first and second operator devices, said first schedule allocating uplink slots and downlink slots to said first and second operator devices, said first schedule including a device switching guard interval, of the determined device switching guard interval duration, in a slot, corresponding to a switch between a first slot in the first schedule allocated to the first operator device and another slot in the first schedule allocated to the second operator device; and
communicating the first schedule to the first and second operator devices.