Abstract:
The present invention relates to a wireless communication system. According to an embodiment of the present invention, a method for a device receiving a signal by using NAICS (Network-Assisted Interference Cancellation and Suppression) in a wireless communication system that supports carrier aggregation comprises the steps of: transmitting, in carrier aggregation, device capability information comprising band combination information which indicates band combination supported by the device; and receiving a signal on the basis of the device capability information, wherein the band combination information can include a maximum bandwidth supporting the NAICS for the band combination.
Abstract:
One embodiment of the present invention relates to a method by which a terminal performs observed time difference of arrival (OTDOA)-related operations in a wireless communication system, the method comprising the steps of: receiving a ProvideAssistanceData message from a server; receiving a RequestLocationlnformation message from the server; measuring a reference signal time difference (RSTD) on the basis of a reference cell after receiving the RequestLocationInformation message; and transmitting the RSTD measurement result to the server, wherein the reference cell is a reference cell indicated by information included in the ProvideAssistanceData or is selected by the terminal from among a plurality of cells indicated by the information included in the ProvideAssistanceData.
Abstract:
A method for transmitting uplink control information in a wireless communication system according to an embodiment of the present invention, which is performed by a terminal, may comprise the steps of: determining the number of coded symbols according to the payload size of uplink control information to be transmitted; and mapping the uplink control information to an uplink resource according to the determined number of the coded symbols, wherein the number of the coded symbols is determined using a parameter selected according to the payload size of the uplink control information to be transmitted.
Abstract:
A solar cell panel is disclosed. The disclosed solar cell panel includes a semiconductor substrate, a conductive region disposed in or on the semiconductor substrate, an electrode connected to the conductive region, a lead (142) electrically connected to the electrode. The electrode includes finger lines, and a bus bar line extending across the finger lines, and electrically connected to the lead. First and second end edge areas (PA3, PA4) are arranged at opposite ends of the bus bar line disposed adjacent to opposite edges of the semiconductor substrate, respectively. The bus bar line includes electrode portions (424a, 424b) respectively disposed at the first end second end edge areas. Each electrode portion includes an opening formed through the each electrode portion, and an outermost end disposed at a position flush with corresponding ones of the outermost ones of the finger lines (421a, 421b) or a position outwards of the corresponding outermost finger lines.
Abstract:
Provided herein is a method for interference cancellation for a UE having interference cancellation capability in a wireless communication system, the method comprising: receiving information on a reference signal transmitted from an interfering cell having the possibility of causing inter-cell interference; and attempting to detect the reference signal using the received information on the reference signal, wherein the information on the reference signal is received when the interfering cell and a serving cell of the UE have the same cyclic prefix (CP) length and are synchronized with each other.
Abstract:
A method for transmitting a physical downlink control channel, PDCCH, by a base station, BS, in a wireless communication system, is proposed, which comprises: transmitting, to a user equipment, UE, first information related to a resource element group, REG, bundle size and second information related to an interleaver size for interleaving REG bundles; and transmitting, based on the first information and the second information, the PDCCH over a control resource set, CORESET, that comprises a plurality of REGs that are bundled into a plurality of REG bundles based on the first information, wherein an interleaver is determined based on the second information and a number of the plurality of REG bundles included in the CORESET, wherein the plurality of REG bundles are interleaved within the CORESET based on the interleaver, and wherein, based on a value of the second information being equal to a number of REG bundles included in a control channel element, CCE, of the CORESET, the REG bundles of the CCE are mapped to physical resources at a regular interval.
Abstract:
A method for transmitting a physical downlink control channel, PDCCH, by a base station, BS, in a wireless communication system, is proposed, which comprises: transmitting, to a user equipment, UE, first information related to a resource element group, REG, bundle size and second information related to an interleaver size for interleaving REG bundles; and transmitting, based on the first information and the second information, the PDCCH over a control resource set, CORESET, that comprises a plurality of REGs that are bundled into a plurality of REG bundles based on the first information, wherein an interleaver is determined based on the second information and a number of the plurality of REG bundles included in the CORESET, wherein the plurality of REG bundles are interleaved within the CORESET based on the interleaver, and wherein, based on a value of the second information being equal to a number of REG bundles included in a control channel element, CCE, of the CORESET, the REG bundles of the CCE are mapped to physical resources at a regular interval.
Abstract:
According to one embodiment of the present invention, a method of receiving, at a base station, hybrid automatic repeat request-acknowledgment, HARQ-ACK, from a user equipment, comprises the steps of: transmitting, to the user equipment, at least one downlink grant, each scheduling a physical downlink shared channel, PDSCH; and receiving, from the user equipment in an uplink subframe n, HARQ-ACK information based on the at least one downlink grant, wherein based on the user equipment being configured with a short processing time shorter than a normal processing time: the base station is not allowed to transmit i) a downlink grant in common search space, CSS, for which HARQ-ACK response is provided in the uplink subframe n and ii) a downlink grant in user equipment specific search space, USS, for which HARQ-ACK response is provided in the same uplink subframe n.
Abstract:
A UE may: receive a configuration regarding a physical downlink control channel (PDCCH) monitoring occasion (MO) for UL CI reception; receive scheduling information for UL transmission; and perform or skip UL CI monitoring for the UL transmission in the PDCCH MO on the basis of the configuration and the scheduling information. Performing or skipping the UL CI monitoring for the UL transmission in the PDCCH MO may comprise: performing the UL CI monitoring for the UL transmission in the PDCCH MO on the basis of the fact that the UL transmission and a reference resource region that may be instructed by a UL CI received in the PDCCH MO overlap at least in terms of time; and skipping the UL CI monitoring for the UL transmission in the PDCCH MO on the basis of the fact that the reference resource region and the UL transmission do not overlap in terms of time.
Abstract:
A method for transmitting an uplink signal by a user equipment, UE, in a wireless communication system, is proposed, which comprises: receiving first information for scheduling a first uplink signal, wherein the first uplink signal is scheduled on a plurality of resources including a first resource based on the first information; receiving second information for scheduling a second uplink signal, wherein the second uplink signal is scheduled on the first resource based on the second information; transmitting, via the first resource, the second uplink signal; and transmitting, via a second resource other than the first resource, the first uplink signal, wherein the second resource is included in the plurality of resources.