Abstract:
A handheld device, a base station and transmission control methods thereof are provided. The handheld device transmits an uplink signal to the base station with an uplink dedicated physical control channel (UL DPCCH) carrying both transport format combination indicator (TFCI) code word and acknowledgement (ACK) information. The base station terminates a downlink signal transmission to the handheld device in response to the ACK information.
Abstract:
A data processing method performed by a Universal Mobile Telecommunications System Frequency Division Duplexing (UMTS-FDD) device includes at least the following steps: generating a control frame and a data frame, wherein the data frame is spread according to a fixed spreading factor which is not greater than a minimum spreading factor prescribed in a UMTS-FDD Release 99 specification, and the control frame includes a transport format combination indicator (TFCI) data; and transmitting the control frames through an uplink dedicated physical control channel (UL DPCCH) and transmitting the data frames through an uplink dedicated physical data channel (UP DPDCH).
Abstract:
A data processing method performed by a Universal Mobile Telecommunications System Frequency Division Duplexing (UMTS-FDD) device includes at least the following steps: receiving a control frame from a dedicated physical control channel (DPCCH) and a data frame from a dedicated physical data channel (DPDCH), wherein the control frame includes n slots, and each slot thereof includes at least a portion of a transport format combination indicator (TFCI) codeword, wherein n is a positive integer, and the TFCI codeword is encoded from TFCI content for indicating a transport format combination of the data frame; and when m of the n slots are received, starting to decode the data frame according to the m slots, wherein m is a positive integer and less than n.
Abstract:
A handheld device, a base station and transmission control methods thereof are provided. The handheld device transmits an uplink signal to the base station. The uplink signal comprises an uplink dedicated physical data channel (UL DPDCH) carrying data information in the first half of the non-transmission gap (non-TG) data slots and a corresponding uplink dedicated physical control channel (UL DPCCH) carrying control information according to a transmission mode.
Abstract:
A method of utilizing same indication fields of time slots for different purposes includes: transmitting an indication signal in an indication field of at least one first time slot on a dedicated physical channel (DPCH); and transmitting at least one known symbol in an indication field of at least one second time slot on the DPCH, wherein the known symbol is arranged for estimating channel characteristics.
Abstract:
A handheld device, a base station and transmission control methods thereof are provided. The handheld device transmits an uplink signal to the base station with an uplink dedicated physical control channel (UL DPCCH) carrying both transport format combination indicator (TFCI) code word and acknowledgement (ACK) information. The base station terminates a downlink signal transmission to the handheld device in response to the ACK information.
Abstract:
Methods and apparatuses pertaining to uplink power consumption reduction for a Narrow Band-Internet of Things (NB-IoT) apparatus. The NB-IoT apparatus may transmit uplink data to a network apparatus via an uplink channel. The network apparatus may decode the uplink data. The network apparatus may further transmit an acknowledgement (ACK) indicator to the NB-IoT apparatus before receiving all the uplink data if the uplink data is decoded successfully. The NB-IoT apparatus may monitor whether an ACK indicator is received from the network apparatus during a transmission gap of the uplink channel. The NB-IoT apparatus may further terminate uplink data transmission if the ACK indicator is received.
Abstract:
A handheld device, a base station and transmission control methods thereof are provided. The handheld device transmits an uplink signal to the base station. The uplink signal comprises an uplink dedicated physical data channel (UL DPDCH) carrying data information in the first half of the non-transmission gap (non-TG) data slots and a corresponding uplink dedicated physical control channel (UL DPCCH) carrying control information according to a transmission mode.
Abstract:
Power control methods are provided. The power control method, performed by a receiving end device, includes receiving two consecutive slots from a dedicated physical channel (DPCH), determining a transmit power control command based on signal qualities of the two consecutive slots; and transmitting the transmit power control command in only a first transmit power control field that is firstly available after the transmit power control command is determined.
Abstract:
A handheld device, a base station and transmission control methods thereof are provided. The handheld device transmits an uplink signal to the base station. The uplink signal comprises an uplink dedicated physical data channel (UL DPDCH) including a first radio data frame, a second radio data frame, a third radio data frame and a fourth radio data frame within two transmission time intervals (TTIs). A first dedicated traffic channel (DTCH) information data and first two segments of a dedicated control channel (DCCH) information data are repeatedly carried in the first and second radio data frames, and a second DTCH information data and last two segments of the dedicated control channel (DCCH) information data are repeatedly carried in the third and fourth radio data frames.