EP2242201B1

Method and device for transmitting uplink signal including data and control information via uplink channel

Abstract

This record has no abstract on file.

EP2242201B1, drawing sheet 1
Sheet 1 of 233

Term

2.7 yearsleft in the term

Expires 26 May 2029.

  1. Priority and filed
  2. Granted
  3. Today
  4. Expires

12 claims: 4 independent, 8 dependent

  1. 1
    A method of transmitting a first and a second uplink signals, wherein the first uplink signal includes data of a transport block for initial transmission and the second uplink signal includes both data of the same transport block and control information, the method comprising:channel coding the control information of the second uplink signal based on a number of coded symbols of the control information to produce channel coded control information, wherein the number of coded symbols of the control information is determined by using the expression: Qʹ = ⌈ O ⋅ M sc PUSCH - initial ⋅ N symb PUSCH - initial ⋅ β offset PUSCH ∑ r = 0 C - 1 K r ⌉ where Q ' is the number of the coded symbols of the control information of the second uplink signal, O is a payload size of the control information of the second uplink signal, N symb PUSCH - initial is a number of Single Carrier Frequency Division Multiple Access, SC-FDMA, symbols per subframe for the initial Physical Uplink Shared Channel, PUSCH, transmission of the first uplink signal, M sc PUSCH - initial is the number of scheduled subcarriers representing the scheduled bandwidth for the initial PUSCH transmission of the first uplink signal, β offset PUSCH is an offset value applied to the control information of the second uplink signal, r is the code block number of the transport block of the first uplink signal before channel coding of the transport block of the first uplink signal, K r is the number of bits in code block number r, and C is the total number of code blocks, and wherein the control information is one of channel quality control information, a rank indication and acknowledgement, ACK/negative acknowledgement, NACK information, and wherein the channel quality control information includes at least one of Channel Quality Information, CQI, and a Precoding Matrix Indicator, PMI.
  2. 5
    A method of receiving a first and a second signal, wherein the first uplink signal includes data of a transport block for initial transmission and the second uplink signal includes both data of the same transport block and control information, the method comprising:channel decoding the control information of the second uplink signal based on a number of coded symbols of the control information to produce channel decoded control information. wherein the number of coded symbols of the control information is determined by using the expression: Qʹ = ⌈ O ⋅ M sc PUSCH - initial ⋅ N symb PUSCH - initial ⋅ β offset PUSCH ∑ r = 0 C - 1 K r ⌉ where Q' is the number of the coded symbols of the control information of the second uplink signal, O is a payload size of the control information of the second uplink signal, N symb PUSCH - initial is a number of Single Carrier Frequency Division Multiple Access, SC-FDMA, symbols per subframe for the initial Physical Uplink Shared Channel, PUSCH, transmission of the first uplink signal, M sc PUSCH - initial is the number of scheduled subcarriers representing the scheduled bandwidth for the initial PUSCH transmission of the first uplink signal, β offset PUSCH is an offset value applied to the control information of the second uplink signal, r is the code block number of the transport block of the first uplink signal before channel coding of the transport block of the first uplink signal, K r is the number of bits in code block number r, and C is the total number of code blocks, and wherein the control information is one of channel quality control information, a rank indication and acknowledgement, ACK/negative acknowledgement, NACK, information, and wherein the channel quality control information includes at least one of Channel Quality Information, CQI, and a Precoding Matrix Indicator, PMI.
  3. 9
    An apparatus configured to transmit a first and a second uplink signals, wherein the first uplink signal includes data of a transport block for initial transmission and the second uplink signal includes both data of the same transport block and control information, the apparatus comprising:a RF unit;a memory;and a processor operatively connected to the RF unit and the memory, the processor configured to channel code the control information of the second uplink signal based on a number of coded symbols of the control information to produce channel coded control information, wherein the number of coded symbols of the control information is determined by using the expression: Qʹ = ⌈ O ⋅ M sc PUSCH - initial ⋅ N symb PUSCH - initial ⋅ β offset PUSCH ∑ r = 0 C - 1 K r ⌉ where Q ' is the number of the coded symbols of the control information of the second uplink signal, O is a payload size of the control information of the second uplink signal, N symb PUSCH - initial is a number of Single Carrier Frequency Division Multiple Access, SC-FDMA, symbols per subframe for the initial Physical Uplink Shared Channel, PUSCH, transmission of the first uplink signal, M sc PUSCH - initial is the number of scheduled subcarriers representing the scheduled bandwidth for the initial PUSCH transmission of the first uplink signal, β offset PUSCH is an offset value applied to the control information of the second uplink signal, r is the code block number of the transport block of the first uplink signal before channel coding of the transport block of the first uplink signal, K r is the number of bits in code block number r, and C is the total number of code blocks, and wherein the control information is one of channel quality control information, a rank indication and acknowledgement, ACK/negative acknowledgement, NACK, information, and wherein the channel quality control information includes at least one of Channel Quality Information, CQI, and a Precoding Matrix Indicator, PMI.
  4. 11
    An apparatus configured to receive a first and a second signal, wherein the first uplink signal includes data of a transport block for initial transmission and the second uplink signal includes both data of the same transport block and control information, the apparatus comprising:a RF unit;a memory;and a processor operatively connected to the RF unit and the memory, the processor configured to channel decode the control information of the second uplink signal based on a number of coded symbols of the control information to produce channel decoded control information, wherein the number of coded symbols of the control information is determined by using the expression: Qʹ = ⌈ O ⋅ M sc PUSCH - initial ⋅ N symb PUSCH - initial ⋅ β offset PUSCH ∑ r = 0 C - 1 K r ⌉ where Q' is the number of the coded symbols of the control information of the second uplink signal, O is a payload size of the control information of the second uplink signal, N symb PUSCH - initial is a number of Single Carrier Frequency Division Multiple Access, SC-FDMA, symbols per subframe for the initial Physical Uplink Shared Channel, PUSCH, transmission of the first uplink signal, M sc PUSCH - initial is the number of scheduled subcarriers representing the scheduled bandwidth for the initial PUSCH transmission of the first uplink signal, β offset PUSCH is an offset value applied to the control information of the second uplink signal, r is the code block number of the transport block of the first uplink signal before channel coding of the transport block of the first uplink signal, K r is the number of bits in code block number r, and C is the total number of code blocks, and wherein the control information is one of channel quality control information, a rank indication and acknowledgement, ACK/negative acknowledgement, NACK, information, and wherein the channel quality control information includes at least one of Channel Quality Information, CQI, and a Precoding Matrix Indicator, PMI.