1. A method of adjusting one or more operational parameters of a small cell base station within a wireless network, comprising:
determining at least one metric related to operational and non-operational states of a small cell base station;
determining a reliability state of the small cell base station based on the at least one metric related to the operational and non-operational states of the small cell base station; and
adjusting the one or more operational parameters of the small cell base station based on the determined reliability state of the small cell base station.
2. The method of claim 1, wherein the at least one metric related to the operational and non-operational states of the small cell base station comprises an amount of time a small cell base station is operational, an amount of time the small cell base station is not operational, andor a number of times the small cell base station switches between the operational and non-operational states.
3. The method of claim 2, wherein the amount of time the small cell base station is not operational comprises an amount of time the small cell base station is powered off or an amount of time the small cell base station is powered on but not providing service.
4. The method of claim 3, wherein the amount of time the small cell base station is powered off is weighted based on a time of day andor a day of the week that the small cell base station is powered off.
5. The method of claim 1, wherein the one or more operational parameters comprise one or more of a transmit power, an access mode, one or more mobility parameters, or any combination thereof.
6. The method of claim 1, wherein determining the reliability state of the small cell base station comprises determining that the small cell base station is in a state of unreliability.
7. The method of claim 6, wherein the adjusting comprises:
adjusting the one or more operational parameters of the small cell base station to limit an impact of the small cell base station on a local self-organizing network based on determining that the small cell base station is in the state of unreliability.
8. The method of claim 6, wherein the adjusting comprises:
adjusting the one or more operational parameters to bias handover against the small cell base station based on determining that the small cell base station is in the state of unreliability.
9. The method of claim 1, wherein determining the reliability state of the small cell base station comprises determining that the small cell base station is in a state of reliability.
10. The method of claim 9, wherein the adjusting comprises:
adjusting the one or more operational parameters to bias handover towards the small cell base station based on determining that the small cell base station is in the state of reliability.
11. The method of claim 1, wherein the one or more operational parameters relate to one or more of:
inclusion of a cell operated by the small cell base station in a neighbor relation table (NRT);
establishment of a network interface between the small cell base station and a node in the wireless network;
inclusion of a cell operated by the small cell base station in a cell blacklist;
determination of whether or not to trigger handover procedures towards a cell operated by the small cell base station, or any combination thereof.
12. The method of claim 1, wherein the one or more operational parameters affect measurement procedures performed on signals from the small cell base station by mobile devices.
13. The method of claim 1, wherein the one or more operational parameters relate to a cell individual offset, measurement thresholds, measurement reporting triggers, or any combination thereof.
14. The method of claim 1, wherein the one or more operational parameters affect operation of the small cell base station in a restricted access mode.
15. The method of claim 14, wherein the small cell base station reverts to an open mode based on a subsequent command.
16. The method of claim 14, wherein the small cell base station reverts to an open mode based on expiration of a timer.
17. The method of claim 1, wherein determining the at least one metric related to the operational and non-operational states of the small cell base station and determining the reliability state of the small cell base station are performed by the small cell base station, a small cell base station neighboring the small cell base station, a macro cell base station in communication with the small cell base station, a macro cell base station neighboring the macro cell base station in communication with the small cell base station, or a central small cell base station controller.
18. The method of claim 17, wherein determining the at least one metric related to the operational and non-operational states of the small cell base station is performed by the macro cell base station in communication with the small cell base station, the macro cell base station neighboring the macro cell base station in communication with the small cell base station, or the central small cell base station controller receiving the at least one metric from the small cell base station.
19. The method of claim 18, wherein adjusting the one or more operational parameters is performed by the macro cell base station in communication with the small cell base station, the macro cell base station neighboring the macro cell base station in communication with the small cell base station, or the central small cell base station controller sending values for the one or more operational parameters to the small cell base station.
20. The method of claim 1, wherein determining the reliability state of the small cell base station is based on one or more absolute criteria or one or more relative criteria depending on a comparison of two or more local small cell base stations.
21. An apparatus for adjusting one or more operational parameters of a small cell base station within a wireless network, comprising:
at least one processor configured to determine at least one metric related to operational and non-operational states of a small cell base station, to determine a reliability state of the small cell base station based on the at least one metric related to the operational and non-operational states of the small cell base station, and to adjust the one or more operational parameters of the small cell base station based on the determined reliability state of the small cell base station; and
a memory coupled to the at least one processor to store the at least one metric related to the operational and non-operational states of the small cell base station.
22. The apparatus of claim 21, wherein the at least one metric related to the operational and non-operational states of the small cell base station comprises an amount of time a small cell base station is operational, an amount of time the small cell base station is not operational, andor a number of times the small cell base station switches between the operational and non-operational states.
23. The apparatus of claim 21, wherein the one or more operational parameters comprise one or more of a transmit power, an access mode, one or more mobility parameters, or any combination thereof.
24. The apparatus of claim 21, wherein the one or more operational parameters relate to one or more of:
inclusion of a cell operated by the small cell base station in a neighbor relation table (NRT);
establishment of a network interface between the small cell base station and a node in the wireless network;
inclusion of a cell operated by the small cell base station in a cell blacklist;
determination of whether or not to trigger handover procedures towards a cell operated by the small cell base station, or any combination thereof.
25. The apparatus of claim 21, wherein the one or more operational parameters affect measurement procedures performed on signals from the small cell base station by mobile devices.
26. The apparatus of claim 21, wherein the one or more operational parameters relate to a cell individual offset, measurement thresholds, measurement reporting triggers, or any combination thereof.
27. The apparatus of claim 21, wherein the one or more operational parameters affect operation of the small cell base station in a restricted access mode.
28. The apparatus of claim 21, wherein determination of the reliability state of the small cell base station is based on one or more absolute criteria or one or more relative criteria depending on a comparison of two or more local small cell base stations.
29. An apparatus for adjusting one or more operational parameters of a small cell base station within a wireless network, comprising:
means for determining at least one metric related to operational and non-operational states of a small cell base station;
means for determining a reliability state of the small cell base station based on the at least one metric related to the operational and non-operational states of the small cell base station; and
means for adjusting the one or more operational parameters of the small cell base station based on the determined reliability state of the small cell base station.
30. A non-transitory computer-readable medium for adjusting one or more operational parameters of a small cell base station within a wireless network, comprising:
at least one instruction to determine at least one metric related to operational and non-operational states of a small cell base station;
at least one instruction to determine a reliability state of the small cell base station based on the at least one metric related to the operational and non-operational states of the small cell base station; and
at least one instruction to adjust the one or more operational parameters of the small cell base station based on the determined reliability state of the small cell base station.
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.
1. A magnetoresistive thin-film magnetic field sensor, comprising:
an antiferromagnetic pinning layer;
a pinned layer comprising:
an amorphous ferromagnetic layer having a thickness in the range of 2 to 15 Angstroms over the pinning layer; and
a first crystalline ferromagnetic layer over the amorphous ferromagnetic layer;
a nonmagnetic coupling layer over the pinned layer;
a ferromagnetic fixed layer over the nonmagnetic coupling layer;
a dielectric tunnel barrier layer over the ferromagnetic fixed layer; and
a ferromagnetic sense layer over the dielectric tunnel barrier layer.
2. The magnetoresistive thin-film magnetic field sensor of claim 1 wherein the pinned layer further includes a second crystalline ferromagnetic layer between the amorphous ferromagnetic layer and the pinning layer.
3. The magnetoresistive thin-film magnetic field sensor of claim 2 wherein the second crystalline ferromagnetic layer comprises CoFe, where Fe is 10.0-25.0 by atomic weight.
4. The magnetoresistive thin-film magnetic field sensor of claim 2 wherein the second crystalline ferromagnetic layer has a thickness in the range of 2 to 10 Angstroms.
5. The magnetoresistive thin-film magnetic field sensor of claim 1 wherein the amorphous ferromagnetic layer comprises CoFeB, where B is 15.0 to 30.0% by atomic weight.
6. The magnetoresistive thin-film magnetic field sensor of claim 1 wherein the first crystalline ferromagnetic layer comprises CoFe, where Fe is 10.0-25.0 by atomic weight.
7. The magnetoresistive thin-film magnetic field sensor of claim 1 wherein the pinned layer and the ferromagnetic fixed layer have different magnetic moments.
8. The magnetoresistive thin-film magnetic field sensor of claim 1 wherein the ferromagnetic sense layer comprises nickel and iron.
9. The magnetoresistive thin-film magnetic field sensor of claim 1 further comprising a diffusion barrier comprising aluminum oxide over the ferromagnetic sense layer.
10. The magnetoresistive thin-film magnetic field sensor of claim 1 wherein the pinned layer comprises a thickness in the range of 10 to 40 Angstroms.