Terminal device, base station device, communication method, and integrated circuit
A terminal device is provided such that in a case that closed-loop UE transmit antenna selection is configured, a bit sequence is given by scrambling CRC parity bits with an RNTI and an antenna selection mask, in a case that the number of the CRC parity bits is a first value, a first transmit antenna port is given by a first antenna selection mask, and in a case that the number of the CRC parity bits is a second value, the first transmit antenna port is given by a second antenna selection mask that is different from the first antenna selection mask.
1. A terminal device comprising:
receiving circuitry configured to receive, from a base station device, a bit sequence <c 0 , . . . , c A+L−1 >; and
decoding circuitry configured to perform a Cyclic Redundancy Check (CRC) for the bit sequence <c 0 , . . . , c A+L−1 >, wherein
the bit sequence <c 0 , . . . , c A+L−1 > is given by:
c k =b k for k= 0, 1, 2, . . . , A+ 7
c= ( b k +X rnti,k−A−8 ) mod 2 for k=A+ 8, A+ 9, A+ 10, . . . , A+ 23
<x rnti,0 , x rnti,1 , . . . , x rnti,15 > is a Radio Network Temporary Identifier (RNTI),
the b k is given by:
b k =a k for k= 0, 1, 2, . . . , A+L− 1
b k =p k−A for k=A, A+ 1, A+ 2, . . . , A+L− 1
a bit sequence <a 0 , . . . , a A−1 > is downlink control information,
A is a payload size of the downlink control information,
a bit sequence <p 0 , . . . , p L−1 > is parity bits for the CRC,
L is a number of the parity bits for the CRC, which is 24,
the decoding circuitry is further configured to detect the downlink control information, and
the receiving circuitry is further configured to perform a reception on a physical downlink shared channel scheduled by the downlink control information.
2. A base station device comprising:
encoding circuitry configured to generate a bit sequence <c 0 , . . . , c A+L−1 >, a Cyclic Redundancy Check (CRC) being applied for the bit sequence <c 0 , . . . , c A+L−1 >; and
transmitting circuitry configured to transmit, to a terminal device, the bit sequence <c 0 , . . . , c A+L−1 >, wherein
the bit sequence <C 0 , . . ., c A+L−1 > is given by:
c k =b k for k= 0, 1, 2, . . . , A+ 7
c= ( b k +X rnti,k−A−8 ) mod 2 for k=A+ 8, A+ 9, A+ 10, . . . , A+ 23
<x rnti,0 , x rnti,1 , . . . , x rnti,15 > is a Radio Network Temporary Identifier (RNTI),
the b k is given by:
b k =a k for k= 0, 1, 2, . . . , A− 1
b k =p k−A for k=A, A+ 1, A+ 2, . . . , A+LL− 1
a bit sequence <a 0 , . . . , a A−1 > is downlink control information,
A is a payload size of the downlink control information,
a bit sequence <p 0 , . . . , p L−1 > is parity bits for the CRC,
L is a number of the parity bits for the CRC, which is 24, and
the transmitting circuitry is further configured to perform a transmission on a physical downlink shared channel scheduled by the downlink control information.
3. A method of a terminal device, comprising:
receiving, from a base station device, a bit sequence <c 0 , . . . , c A+L−1 >; and
performing a Cyclic Redundancy Check (CRC) for the bit sequence <c 0 , . . . , c A+L−1 >, wherein
the bit sequence <c 0 , . . . , c A+L−1 > is given by:
c k =b k for k= 0, 1, 2, . . . , A+ 7
c= ( b k +X rnti,k−A−8 ) mod 2 for k=A+ 8, A+ 9, A+ 10, . . . , A+ 23
<x rnti,0 , x rnti,1 , . . . , x rnti,15 > is a Radio Network Temporary Identifier (RNTI),
the b k is given by:
b k =a k for k= 0, 1, 2, . . . , A− 1
b k =p k−A for k=A, A+ 1, A+ 2, . . . , A+L− 1
a bit sequence <a 0 , . . . , a A−1 > is downlink control information,
A is a payload size of the downlink control information,
a bit sequence <p 0 , . . . , p L−1 > is parity bits for the CRC,
L is a number of the parity bits for the CRC, which is 24,
detecting the downlink control information, and
performing a reception on a physical downlink shared channel scheduled by the downlink control information.
4. A method of a base station device comprising:
generating a bit sequence <c 0 , . . . , c A+L−1 >, a Cyclic Redundancy Check (CRC) being applied for the bit sequence <c 0 , . . . , c>c A+L−1 >; and
transmitting, to a terminal device, the bit sequence <c 0 , . . . , c A+L−1 >, wherein
the bit sequence <c 0 , . . . , c A+L−1 > is given by:
c k =b k for k= 0, 1, 2, . . . , A+ 7
c= ( b k +X rnti,k−A−8 ) mod 2 for k=A+ 8, A+ 9, A+ 10, . . . , A+ 23
<x rnti,0 , x rnti,1 , . . . , x rnti,15 > is a Radio Network Temporary Identifier (RNTI),
the b k is given by:
b k =a k for k= 0, 1, 2, . . . , A− 1
b k =p k−A for k=A, A+ 1, A+ 2, . . . , A+L− 1
a bit sequence <a 0 , . . . , a A−1 > is downlink control information,
A is a payload size of the downlink control information,
a bit sequence <p 0 , . . . , p L−1 > is parity bits for the CRC, and
L is a number of the parity bits for the CRC, which is 24, and
performing a transmission on a physical downlink shared channel scheduled by the downlink control information.