Method and apparatus for enhancing resource allocation for uplink MIMO communication
First Claim
Patent Images
1. A method for communicating using multiple-input multiple-output (MIMO) in a wireless network, comprising:
- receiving, at a user equipment (UE), one or more scheduling grants from a Node B relating to a plurality of uplink streams of the UE in MIMO on a single carrier;
receiving an enhanced relative grant channel (E-RGCH) from the Node B, as well as another E-RGCH from a non-serving Node B, for each or a subset of the plurality of uplink streams;
determining a primary transmit power and a primary transport block size (TBS) for a primary stream of the plurality of uplink streams, the primary stream carrying a primary data channel (E-DPDCH) on the single carrier;
determining a secondary transmit power and a secondary TBS for a secondary stream of the plurality of uplink streams, the secondary stream carrying a secondary data channel (S-E-DPDCH) on the single carrier; and
transmitting scheduling information including a defined headroom for the plurality of streams based on consideration of a power of a secondary dedicated physical control channel (S-DPCCH) and a power of a secondary enhanced dedicated physical control channel (S-E-DPCCH) on the single carrier.
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Accused Products
Abstract
One or more scheduling grants may be received from a Node B related to a plurality of uplink MIMO streams. A determination may be made as to a primary transport power and a primary transport block size for a primary stream. A secondary transmit power and a secondary transport block size for a secondary stream may also be determined. An enhanced relative grant channel from the Node B, as well as another E-RGC from a non-serving Node B may be received for each of the plurality of uplink MIMO streams.
114 Citations
23 Claims
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1. A method for communicating using multiple-input multiple-output (MIMO) in a wireless network, comprising:
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receiving, at a user equipment (UE), one or more scheduling grants from a Node B relating to a plurality of uplink streams of the UE in MIMO on a single carrier; receiving an enhanced relative grant channel (E-RGCH) from the Node B, as well as another E-RGCH from a non-serving Node B, for each or a subset of the plurality of uplink streams; determining a primary transmit power and a primary transport block size (TBS) for a primary stream of the plurality of uplink streams, the primary stream carrying a primary data channel (E-DPDCH) on the single carrier; determining a secondary transmit power and a secondary TBS for a secondary stream of the plurality of uplink streams, the secondary stream carrying a secondary data channel (S-E-DPDCH) on the single carrier; and transmitting scheduling information including a defined headroom for the plurality of streams based on consideration of a power of a secondary dedicated physical control channel (S-DPCCH) and a power of a secondary enhanced dedicated physical control channel (S-E-DPCCH) on the single carrier. - View Dependent Claims (2, 3, 4, 5)
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6. An apparatus for communicating using multiple-input multiple-output (MIMO) in a wireless network, comprising:
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means for receiving one or more scheduling grants from a Node B relating to a plurality of uplink streams in MIMO on a single carrier; means for receiving an enhanced relative grant channel (E-RGCH) from the Node B, as well as another E-RGCH from a non-serving Node B, for each or a subset of the plurality of uplink streams; means for determining a primary transmit power and a primary transport block size (TBS) for a primary stream of the plurality of uplink streams, the primary stream carrying a primary data channel (E-DPDCH) on the single carrier; means for determining a secondary transmit power and a secondary TBS for a secondary stream of the plurality of uplink streams, the secondary stream carrying a secondary data channel (S-E-DPDCH) on the single carrier; and means for transmitting scheduling information including a defined headroom for the plurality of streams based on consideration of a power of a secondary dedicated physical control channel (S- DPCCH) and a power of a secondary enhanced dedicated physical control channel (S-E-DPCCH) on the single carrier. - View Dependent Claims (7, 8, 9, 10)
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11. A non-transitory computer-readable medium for communicating using multiple-input multiple-output (MIMO) in a wireless network comprising code for causing a computer to:
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receive one or more scheduling grants from a Node B relating to a plurality of uplink streams in MIMO on a single carrier; receive an enhanced relative grant channel (E-RGCH) from the Node B, as well as another E-RGCH from a non-serving Node B, for each or a subset of the plurality of uplink streams; determine a primary transmit power and a primary transport block size (TBS) for a primary stream of the plurality of uplink streams, the primary stream carrying a primary data channel (E-DPDCH) on the single carrier; determine a secondary transmit power and a secondary TBS for a secondary stream of the plurality of uplink streams, the secondary stream carrying a secondary data channel (S-E-DPDCH) on the single carrier; and transmit scheduling information including a defined headroom for the plurality of streams based on consideration of a power of a secondary dedicated physical control channel (S-DPCCH) and a power of a secondary enhanced dedicated physical control channel (S-E-DPCCH) on the single carrier. - View Dependent Claims (12, 13, 14, 15)
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16. An apparatus for communicating using multiple-input multiple-output (MIMO) in a wireless network, comprising:
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at least one processor configured to; receive one or more scheduling grants from a Node B relating to a plurality of uplink streams in MIMO on a single carrier; receive an enhanced relative grant channel (E-RGCH) from the Node B, as well as another E-RGCH from a non-serving Node B, for each or a subset of the plurality of uplink streams; determine a primary transmit power and a primary transport block size (TBS) for a primary stream of the plurality of uplink streams, the primary stream carrying a primary data channel (E-DPDCH) on the single carrier; determine a secondary transmit power and a secondary TBS for a secondary stream of the plurality of uplink streams, the secondary stream carrying a secondary data channel (S-E-DPDCH) on the single carrier; and transmit scheduling information including a defined headroom for the plurality of streams based on consideration of a power of a secondary dedicated physical control channel (S-DPCCH) and a power of a secondary enhanced dedicated physical control channel (S-E-DPCCH) on the single carrier; and a memory coupled to the at least one processor. - View Dependent Claims (17, 18, 19, 20)
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21. A method for communicating using multiple-input multiple-output (MIMO) in a wireless network, comprising:
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receiving, at a user equipment (UE), one or more scheduling grants from a Node B relating to a plurality of uplink streams of the UE in MIMO on a single carrier; receiving an enhanced relative grant channel (E-RGCH) from the Node B, as well as another E-RGCH from a non-serving Node B, for each or a subset of the plurality of uplink streams; determining a primary transmit power and a primary transport block size (TBS) for a primary stream of the plurality of uplink streams, the primary stream carrying a primary data channel (E-DPDCH) on the single carrier; determining a secondary transmit power and a secondary TBS for a secondary stream of the plurality of uplink streams, the secondary stream carrying a secondary data channel (S-E-DPDCH) on the single carrier; transmitting scheduling information including a defined headroom for the plurality of streams based on consideration of a power of a secondary dedicated physical control channel (S-DPCCH) and a power of a secondary enhanced dedicated physical control channel (S-E-DPCCH) on the single carrier; and communicating a first happy bit based on a combined data rate over the plurality of uplink streams, the primary transmit power, and the secondary transmit power, wherein the communicating the first happy bit comprises communicating the first happy bit over an enhanced dedicated physical control channel (E-DPCCH), and further comprising communicating a second happy bit over the S-E-DPCCH, wherein the second happy bit provides an indication related to the secondary stream, wherein the second happy bit indicates a check-sum of one or more other bits in the S-E-DPCCH.
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22. A method for communicating using multiple-input multiple-output (MIMO) in a wireless network, comprising:
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receiving, at a user equipment (UE), one or more scheduling grants from a Node B relating to a plurality of uplink streams of the UE in MIMO on a single carrier; receiving an enhanced relative grant channel (E-RGCH) from the Node B, as well as another E-RGCH from a non-serving Node B, for each or a subset of the plurality of uplink streams; determining a primary transmit power and a primary transport block size (TBS) for a primary stream of the plurality of uplink streams, the primary stream carrying a primary data channel (E-DPDCH) on the single carrier; determining a secondary transmit power and a secondary TBS for a secondary stream of the plurality of uplink streams, the secondary stream carrying a secondary data channel (S-E-DPDCH) on the single carrier; transmitting scheduling information including a defined headroom for the plurality of streams based on consideration of a power of a secondary dedicated physical control channel (S-DPCCH) and a power of a secondary enhanced dedicated physical control channel (S-E-DPCCH) on the single carrier; and communicating a first happy bit based on a combined data rate over the plurality of uplink streams, the primary transmit power, and the secondary transmit power, wherein the communicating the first happy bit comprises communicating the first happy bit over an enhanced dedicated physical control channel (E-DPCCH), and further comprising communicating a second happy bit over the S-E-DPCCH, wherein the second happy bit provides an indication related to the secondary stream, wherein the second happy bit indicates that an autonomous fallback to rank 1 transmission has occurred even though the Node B has requested rank 2 transmission.
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23. A method for communicating using multiple-input multiple-output (MIMO) in a wireless network, comprising:
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receiving, at a user equipment (UE), one or more scheduling grants from a Node B relating to a plurality of uplink streams of the UE in MIMO on a single carrier; receiving an enhanced relative grant channel (E-RGCH) from the Node B, as well as another E-RGCH from a non-serving Node B, for each or a subset of the plurality of uplink streams; determining a primary transmit power and a primary transport block size (TBS) for a primary stream of the plurality of uplink streams, the primary stream carrying a primary data channel (E-DPDCH) on the single carrier; determining a secondary transmit power and a secondary TBS for a secondary stream of the plurality of uplink streams, the secondary stream carrying a secondary data channel (S-E-DPDCH) on the single carrier; transmitting scheduling information including a defined headroom for the plurality of streams based on consideration of a power of a secondary dedicated physical control channel (S-DPCCH) and a power of a secondary enhanced dedicated physical control channel (S-E-DPCCH) on the single carrier; and communicating a first happy bit based on a combined data rate over the plurality of uplink streams, the primary transmit power, and the secondary transmit power, wherein the communicating the first happy bit comprises communicating the first happy bit over an enhanced dedicated physical control channel (E-DPCCH), and further comprising communicating a second happy bit over the S-E-DPCCH, wherein the second happy bit provides an indication related to the secondary stream, wherein the second happy bit indicates a cause of autonomous fallback to rank 1 transmission.
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Specification