Mobile communication system
A mobile communication system according to one embodiment comprises: a base station configured to transmit discovery reference signal in an unlicensed spectrum, and a radio terminal configured to receive the discovery reference signal in the unlicensed spectrum. The base station notifies the radio terminal of timing information indicating a timing at which the discovery reference signal is to be transmitted in the unlicensed spectrum.
1. A mobile communication system comprising:
a base station configured to transmit a synchronization signal and a master information block in a shared spectrum, and
a user equipment configured to receive the synchronization signal and the master information block in the shared spectrum, wherein
the base station is configured to transmit the master information block at a same transmission cycle as a transmission cycle of the synchronization signal, the base station is configured to transmit to the user equipment via the shared spectrum, predetermined information indicating time domain positions at which the synchronization signal and the master information block are to be transmitted in the shared spectrum, wherein
the base station is configured to transmit the synchronization signal and the master information block in the shared spectrum after performing Listen-Before-Talk (LBT) and the LBT being successful,
the predetermined information indicates, as the time domain positions, a periodicity of a time period periodically arranged in the time domain, the time period comprising a plurality of continuous subframes in which the user equipment attempts to receive the synchronization signal and the master information block, and a number of a plurality of time units in the time period, where each time unit is shorter than a subframe, and
the periodicity indicated by the predetermined information is smaller than 40 ms.
2. The mobile communication system according to claim 1 , wherein
the base station is configured to transmit the synchronization signal and the master information block in consecutive symbols.
3. A base station comprising:
a transmitter configured to transmit, to a user equipment, a synchronization signal and a master information block in a shared spectrum, wherein
the transmitter is configured to transmit, to the user equipment, the master information block at a same transmission cycle as a transmission cycle of the synchronization signal, and
the transmitter is configured to notify the user equipment, via the shared spectrum, of predetermined information indicating time domain positions at which the synchronization signal and the master information block are to be transmitted in the shared spectrum, wherein
the transmitter is configured to transmit the synchronization signal and the master information block in the shared spectrum after performing Listen-Before-Talk (LBT) and the LBT being successful,
the predetermined information indicates, as the time domain positions, a periodicity of a time period periodically arranged in the time domain, the time period comprising a plurality of continuous subframes in which the user equipment attempts to receive the synchronization signal and the master information block, and a number of a plurality of time units in the time period, where each time unit is shorter than a subframe, and
the periodicity indicated by the predetermined information is smaller than 40 ms.
4. A user equipment comprising:
a receiver configured to receive, from a base station, a synchronization signal and a master information block in a shared spectrum, wherein
the master information block is transmitted at a same transmission cycle as a transmission cycle of the synchronization signal, and
the receiver is configured to receive from the base station via the shared spectrum, predetermined information indicating time domain positions at which the synchronization signal and the master information block are to be transmitted in the shared spectrum, wherein
the synchronization signal and the master information block are transmitted in the shared spectrum after performing Listen-Before-Talk (LBT) and the LBT being successful,
the predetermined information indicates, as the time domain positions, a periodicity of a time period periodically arranged in the time domain, the time period comprising a plurality of continuous subframes in which the user equipment attempts to receive the synchronization signal and the master information block, and a number of a plurality of time units in the time period, where each time unit is shorter than a subframe, and
the periodicity indicated by the predetermined information is smaller than 40 ms.
5. A controller for controlling a user equipment, the controller comprising:
a processor configured to perform a process of receiving, from a base station, a synchronization signal and a master information block in a shared spectrum, wherein
the master information block is transmitted at a same transmission cycle as a transmission cycle of the synchronization signal, and
the processor is further configured to receive from the base station via the shared spectrum, predetermined information indicating time domain positions at which the synchronization signal and the master information block are to be transmitted in the shared spectrum, wherein
the synchronization signal and the master information block are transmitted in the shared spectrum after performing Listen-Before-Talk (LBT) and the LBT being successful,
the predetermined information indicates, as the time domain positions, a periodicity of a time period periodically arranged in the time domain, the time period comprising a plurality of continuous subframes in which the user equipment attempts to receive the synchronization signal and the master information block, and a number of a plurality of time units in the time period, where each time unit is shorter than a subframe, and
the periodicity indicated by the predetermined information is smaller than 40 ms.
6. A method comprising:
transmitting, by a base station, a synchronization signal and a master information block in a shared spectrum, and
receiving, by a user equipment, the synchronization signal and the master information block in the shared spectrum, wherein
the transmitting includes transmitting the master information block at a same transmission cycle as a transmission cycle of the synchronization signal, and
the method further comprises transmitting by the base station to the user equipment via the shared spectrum, predetermined information indicating time domain positions at which the synchronization signal and the master information block are to be transmitted in the shared spectrum, wherein
the synchronization signal and the master information block are transmitted in the shared spectrum after performing Listen-Before-Talk (LBT) and the LBT being successful,
the predetermined information indicates, as the time domain positions, a periodicity of a time period periodically arranged in the time domain, the time period comprising a plurality of continuous subframes in which the user equipment attempts to receive the synchronization signal and the master information block, and a number of a plurality of time units in the time period, where each time unit is shorter than a subframe, and
the periodicity indicated by the predetermined information is smaller than 40 ms.