Radio terminal, radio station, and method thereof
A radio terminal ( 3 ) operates to perform a predetermined process regarding a first cell (Cell # 2 ) on an unlicensed frequency (F 2 ) based on a predetermined relationship between a frame timing of a first serving cell (Cell # 1 ) using a licensed frequency (F 1 ) and a frame timing of the first cell (Cell # 2 ) using the unlicensed frequency (F 2 ). This contributes, for example, to enabling a radio terminal to differentiate among two or more cells when these cells use the same cell identifier.
1. A radio terminal configured to perform Licensed Assisted Access (LAA) using a primary cell operating in licensed frequency and a secondary cell operating in unlicensed frequency, the radio terminal comprising:
a transceiver; and
a processor configured to:
receive, via the transceiver, an offset value to indicate subframe of the secondary cell,
detect the secondary cell operating in the unlicensed frequency based on:
subframe timing of the secondary cell, the subframe timing of the secondary cell being aligned with subframe timing of the primary cell, and
the offset value to indicate the subframe of the secondary cell, and
measure Reference Signal Received Power (RSRP) and Reference Signal Received Quality (RSRQ) of one or more discovery signals transmitted on the detected secondary cell based on:
the subframe timing of the secondary cell, and
the offset value to indicate the subframe of the secondary cell.
2. A method for a radio terminal configured to perform Licensed Assisted Access (LAA) using a primary cell operating in licensed frequency and a secondary cell operating in unlicensed frequency, the method comprising:
receiving an offset value to indicate subframe of the secondary cell,
detecting the secondary cell operating in the unlicensed frequency based on:
subframe timing of the secondary cell, the subframe timing of the secondary cell being aligned with subframe timing of the primary cell, and
the offset value to indicate the subframe of the secondary cell, and
measure Reference Signal Received Power (RSRP) and Reference Signal Received Quality (RSRQ) of one or more discovery signals transmitted on the detected secondary cell based on:
the subframe timing of the secondary cell, and
the offset value to indicate the subframe of the secondary cell.