Method for generating a reference signal sequence using grouping
Method for generating reference signal sequence using grouping is explained. In this method, base sequences are grouped such that each group contains at least one base sequence of each length, so UE(s) can use various length sequences as a reference signal. And in this method, inter cell interference caused by using various length sequence as a reference signal sequence can be minimized by grouping sequences having the high cross correlation relation.
1. A method for a user equipment (UE) to transmit reference signal sequences to a base station, the method comprising:
acquiring a reference signal sequence by using sequences divided into groups,
wherein each group comprises sequences generated by using Zadoff-Chu (ZC) sequences having lengths of N 1 , N 2 , . . . , and N M , wherein each group comprises sequences generated by using ZC sequences each having a sequence index s i (iε{1, 2, . . . , M}) determined as a closest integer satisfying the equation:
s i /N i =a reference value,
wherein the reference value is determined based on a group index, and
wherein the group index is determined based on a cell identification, and
transmitting the acquired reference signal sequence to the base station.
2. The method of claim 1 , wherein each group further comprises sequences generated by using ZC sequences each having a sequence index other than the given s i for the corresponding N i .
3. The method of claim 1 , wherein the reference value is determined based on a length of the ZC sequence for generating a reference signal sequence with a length corresponding to a size of a predetermined number of resource blocks (RBs) in a frequency domain.
4. The method of claim 1 , wherein the reference value is determined by the equation:
(u+1)/31,
wherein ‘u’ indicates the group index.
5. The method of claim 1 , wherein the sequence index s i (iε{1, 2, . . . , M} is determined by the equation:
s i =floor ( N i *( u+ 1)/31+½),
wherein ‘u’ indicates the group index, and ‘floor (x)’ is a function of ‘x’ resulting in a biggest integer not greater than ‘x’.
6. The method of claim 1 , wherein each group further comprises sequences defined by using another type of sequence other than the ZC sequence.
7. A user equipment (UE) for transmitting reference signal sequences to a base station, the UE comprising:
a transceiver configured to transmit signals; and
a processor configured to:
acquire a reference signal sequence by using sequences divided into groups,
wherein each group comprises sequences generated by using Zadoff-Chu (ZC) sequences having lengths of N 1 , N 2 , . . . , and N M , wherein each group comprises sequences generated by using ZC sequences each having a sequence index s i (iε{1, 2, . . . , M} determined as a closest integer satisfying the equation:
s i /N i =a reference value,
wherein the reference value is determined based on a group index, and
wherein the group index is determined based on a cell identification, and
control the transceiver to transmit the acquired reference signal sequence to the base station.
8. The UE of claim 7 , wherein each group further comprises sequences generated by using ZC sequences each having a sequence index other than the given s i for the corresponding N i .
9. The UE of claim 7 , wherein the reference value is determined based on a length of the ZC sequence for generating a reference signal sequence with a length corresponding to a size of a predetermined number of resource blocks (RBs) in a frequency domain.
10. The UE of claim 7 , wherein the reference value is determined by the equation:
(u+1)/31,
wherein ‘u’ indicates the group index.
11. The UE of claim 7 , wherein the sequence index s i (iε{1, 2, . . . , M} is determined by the an equation:
s i =floor ( N i *( u+ 1)/31+½),
wherein ‘u’ indicates the group index, and ‘floor (x)’ is a function of ‘x’ resulting in a biggest integer not greater than ‘x’.
12. The UE of claim 7 , wherein each group further comprises sequences defined by using another type of sequence other than the ZC sequence.