Control channel design method
A design method and control channel technology, applied in wireless communication, communication between multiple stations, network traffic/resource management, etc., can solve problems such as unsatisfactory transmission delay
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no. 1 example
[0040] Embodiment 1: Control channel design with fixed SCH position
[0041] In the first embodiment according to the present invention, the position of the SCH is fixed, and the control channel of this mode has the above reference figure 2 In addition to the characteristics of the subframe-based control channel described, it also has the following characteristics:
[0042] In the radio resources included in the frame, the position of the SCH is fixed, and is indicated by the frame header or other common broadcast messages. The position of the subframe MAP in the scheduling area controlled by the SCH is dynamic, and the position, length, modulation and coding mode and transmission mode of the MAP are indicated by the SCH.
[0043] When the position of the SCH is fixed, the terminal judges which subframes need to receive the subframe MAP according to the indication information contained in the SCH at the fixed position, and does not need to monitor all the subframes, thereby ...
no. 2 example
[0048] The second embodiment: control channel design with dynamic SCH position
[0049] In the second embodiment according to the present invention, the position of the SCH is not fixed, and the control channel of this mode needs to have the above reference figure 2 In addition to the characteristics of the subframe-based control channel described, it also has the following characteristics:
[0050] In the radio resources included in the frame, the position of the SCH is not fixed, but dynamic, that is, its position is determined according to the scheduling needs of the base station. Compared with the first embodiment, the position of the subframe MAP in the scheduling area controlled by the SCH is still dynamic, and the position, length and modulation and coding mode of the MAP are still indicated by the SCH.
[0051] When the position of the SCH is dynamic, the terminal needs to monitor each position where the SCH may appear, and then judge whether there is an SCH, and det...
no. 3 example
[0058] In the third embodiment according to the present invention, the position of the SCH is not fixed, and the control channel of this mode needs to have the above reference figure 2 In addition to the characteristics of the subframe-based control channel described, it also has the following characteristics:
[0059] In the wireless resources contained in the frame, the position of the SCH is not fixed, but dynamic, that is, its position is determined according to the scheduling needs of the base station, and the SCH carries the information of the next SCH, including whether it exists and the position information etc., that is, the presence or absence of the next SCH and its position are specified by the previous SCH, finally forming a chained SCH structure. The location of the subframe MAP in the scheduling area controlled by the SCH is still dynamic, and the location, length, and modulation and coding mode of the MAP are still indicated by the SCH.
[0060] When the base...
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