Abstract:
픽처의부호화대상블록을부호화하는부호화장치(100)로서, 회로및 메모리를구비하고, 회로는메모리를이용하여, 제1 변환기저를이용하여부호화대상블록의잔차신호에제 1 변환을행함으로써제1 변환계수를생성하고, 제1 변환기저가소정변환기저와일치하는경우는, 제2 변환기저를이용하여제1 변환계수에제2 변환을행함으로써제2 변환계수를생성하고, 제2 변환계수를양자화하고, 제1 변환기저가소정변환기저와다른경우는, 제2 변환을행하지않고제1 변환계수를양자화한다.
Abstract:
요약서부호화장치(100)는, 분할타입을정의한블록분할모드를 1개또는복수조합한블록분할모드세트를이용하여복수의블록으로분할하고, 블록분할모드세트는, 제1 블록을분할하기위한분할방향과분할수를정의한제1 블록분할모드와, 제1 블록의분할후에얻어진블록중 하나인제2 블록을분할하기위한분할방향과분할수를정의한제2 블록분할모드로이루어지고, 제1 블록분할모드의분할수가 3이고, 제2 블록이, 제1 블록의분할후에얻어진블록중 중앙의블록이며, 또한, 제2 블록분할모드의분할방향이, 제1 블록분할모드의분할방향과같은경우, 제2 블록분할모드는분할수가 3인블록분할모드만을포함한다.
Abstract:
A transmitter (100a), which is resistant to structural constraints, comprises: a liquid crystal plate (103a); a first plate (102a) that is translucent; a second plate (104a); and a control unit (101a) that applies, to the liquid crystal plate (103a), a control voltage in accordance with a signal to be transmitted, thereby switching the transmittance of the liquid crystal plate (103a) for an external light, thereby changing the light quantity of the external light to be reflected by the first plate (102a) and sent out via the liquid crystal plate (103a) toward a receiver. The control unit (101a), when having switched the transmittance of the liquid crystal plate (103a) to a lower transmittance, maintains the lower transmittance of the liquid crystal plate (103a) until the external light having already passed through the liquid crystal plate (103a) is reflected by the second plate (104a) and thereafter reaches the liquid crystal plate (103a).
Abstract:
A PUCCH resource collision between a normal mode terminal and MTC coverage enhancement mode terminal is avoided. A terminal includes a receiving section that receives control information indicating assignment of downlink data, and the downlink data; and a transmitting section that transmits a response signal using a resource in a first resource group when the terminal is a first terminal to which repetition transmission is applied, and that transmits the response signal using a resource in a second resource group that is different from the first resource group, when the terminal is a second terminal to which the repetition transmission is not applied.
Abstract:
An encoding device (100) that realizes further improvements is provided with a processing circuit and a memory. Using this memory, the processing circuit converts each of blocks, respectively comprising a plurality of pixels, into a block comprising a plurality of conversion coefficients using the base, reconstructs a block comprising the plurality of pixels by performing at least inverse conversion on each block comprising the plurality of conversion coefficients, determines filter characteristics for the boundary of two reconstructed blocks adjacent to each other on the basis of a combination of the bases used for the conversion of each of the two blocks (steps S1201, S1202), and performs a deblocking filter process having the determined filter characteristics (step S1203).
Abstract:
A coding device that codes image blocks. The coding device comprises a processor and memory that is connected to the processor. The processor uses the memory to initialize block segmentation information (S5001). If the initialized block segmentation information is used, a block is segmented into a plurality of sub-blocks for a first geometry set. Then the processor writes a parameter into a bit stream (S5002) and uses the written parameter to correct the initialized block segmentation information to produce corrected block segmentation information (S5003). If the corrected block segmentation information is used, the block is segmented into a plurality of sub-blocks for a geometry set that is different from the first geometry set. Then the processor uses the corrected block segmentation information to correct the geometry of the plurality of sub-blocks (S5004). Then the processor codes the sub-blocks included in the plurality of sub-blocks using coding processing that includes transform processing and/or prediction processing (S5005).
Abstract:
The present disclosure provides a power control method and a wireless device, in a cluster comprised of wireless devices including a first wireless device and a second wireless device, comprising: receiving power control information including a second data channel transmission power, from the second wireless device; determining a first data channel transmission power based on the second data channel transmission power; and controlling data channel transmission power of the first wireless device according to the first data channel transmission power; wherein, the first data channel transmission power is a power allowing the first wireless device to reach all wireless devices in the cluster, and the second data channel transmission power is a power allowing the second wireless device to reach all wireless devices in the cluster.
Abstract:
Provided are a user equipment and a wireless communication method for LAA. The user equipment comprises: a receiver operative to receive a UL grant which schedules a subframe for UL transmission; a first circuit operative to perform LBT; a transmitter operative to transmit a PUSCH in the scheduled subframe starting from one available starting position of multiple candidate starting positions in the scheduled subframe if the LBT is successful. According to present disclosure, it is possible to increase the possibility that PUSCH could be sent in the scheduled subframe after LBT.