摘要:
When the communication channel is to be changed, a more optimal communication channel is determined by summing up the results of measuring communication states transmitted from individual wireless terminals A, B, and C and making a collective judgment. Weighting coefficients are set to the individual wireless terminals A, B, and C. Values indicating whether or not the respective communication states of the individual wireless terminals are optimal with channels ch1 to ch4 to be used for communication (which are, e.g., 1, 0, 1, 2 with the respective channels ch1, ch2, ch3, and ch4 for the wireless terminal A and larger as the communication states are less optimal) are multiplied by the weight coefficient (the value of 3). The resulting values are summed up on a per-channel basis and the most optimal communication channel (of which the summed value is lowest) is selected. As a result, wave interference with the other wireless terminal is reduced.
摘要:
When the communication channel is to be changed, a more optimal communication channel is determined by summing up the results of measuring communication states transmitted from individual wireless terminals A, B, and C and making a collective judgment. Weighting coefficients are set to the individual wireless terminals A, B, and C. Values indicating whether or not the respective communication states of the individual wireless terminals are optimal with channels ch1 to ch4 to be used for communication (which are, e.g., 1, 0, 1, 2 with the respective channels ch1, ch2, ch3, and ch4 for the wireless terminal A and larger as the communication states are less optimal) are multiplied by the weight coefficient (the value of 3). The resulting values are summed up on a per-channel basis and the most optimal communication channel (of which the summed value is lowest) is selected. As a result, wave interference with the other wireless terminal is reduced.
摘要:
The objective of the invention is the constant optimization of the sizes of buffers required for a transmission process and a reception process, and the effective use of memory resources. A contents processor includes a contents change detector. When the contents are changed, the contents change detector transmits to a wireless communication unit a contents identifier corresponding to contents that are to be newly processed by the wireless communication unit. The wireless communication unit includes a contents information table in which information concerning the contents is stored. The wireless communication unit examines the contents information table, obtains the sizes of buffers required for a transmission process and a reception process, based on the contents identifier transmitted by the contents processor, and redistributes the transmission buffer and the reception buffer for a buffer queue.
摘要:
A 3D image display apparatus comprises a transmission-reception device and a control signal output device. The transmission-reception device receives a video data including a plurality of image informations which is base data of 3D images from a 3D image playback apparatus through a transmission cable and thereby generates an image signal. The control signal output device transmits a control signal for controlling light penetration states of penetration units for right and left eyes to shutter glasses. The transmission-reception device receives the video data from the 3D image playback apparatus through the transmission cable and thereby generates the image signal and a synchronizing signal. The synchronizing signal indicates which of the plurality of image informations is included in the image signal currently outputted. The control signal output device generates the control signal based on the synchronizing signal.