Method and system for allocating maximum value of available soft channel bits
A soft channel bit and maximum value technology, which is applied in the field of allocation of the maximum value of available soft channel bits, can solve the problems of inability to transmit integers, increased signaling load, and inability to enumerate all data, and achieves the effect of satisfying performance requirements.
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Embodiment 1
[0074] In this embodiment, the UE capability is 14, and the corresponding soft channel total bit number is 259200 bits (bit) IR method, such as figure 2 shown, including the following steps:
[0075] Step 310: Node B divides the total number of soft channel bits (T=259200bit) corresponding to the UE capability level by the number of HARQs (N=6) to obtain temp_process_memory_size (that is, the above-mentioned N TIR =43200bit).
[0076] Step 320: For the calculated temp_process_memory_size, Node B finds the value (40000bit) closest to the value but less than or equal to the temp_process_memory_size from the predefined enumeration value, which is called the cache size (process_memory_size), and the cache size is the original Maximum number of available soft channel bits N in the invention IR .
[0077] Step 330: Node B returns the number of HARQ processes (Number of Processes) as 6 to the radio network controller through the radio link establishment response message.
[007...
Embodiment 2
[0083] In this embodiment, the UE capability is 10, and the total number of soft channel bits corresponding to it is 172800 bits as an example to illustrate the allocation of HARQ N IR method, such as image 3 shown, including the following steps:
[0084] Step 410: Node B divides the total number of soft channel bits (172800 bits) corresponding to the UE capability level by the number of HARQs (6), and obtains temp_process_memory_size (that is, the above-mentioned N TIR =28800bit).
[0085] Step 420: Node B finds the value (28800bit) closest to the calculated temp_process_memory_size from the predefined enumeration value (28800bit), which is called the cache size, and the cache size is available in the present invention Soft channel bit maximum value N IR .
[0086] Step 430: Node B returns the number of HARQ processes (Number of Processes) to the radio network controller as 6 through the radio link establishment response.
[0087] Step 440: The radio network controller ...
Embodiment 3
[0092] In this embodiment, taking UE capability as 16, working in dual-carrier mode, and the corresponding total number of soft channel bits as 345600 bits as an example, the allocation of HARQ N IR method, such as Figure 4 shown, including the following steps:
[0093] Step 510: Node B divides the total number of soft channel bits (345600 bits) corresponding to the UE capability level by the number of HARQs (12), and obtains temp_process_memory_size (that is, the above-mentioned N TIR =28800bit).
[0094] Step 520: Node B finds the value (28800bit) closest to the calculated temp_process_memory_size from the predefined enumeration value (28800bit), which is called the cache size, and the cache size is available in the present invention Soft channel bit maximum value N IR .
[0095] Step 530: Node B returns the number of HARQ processes (Number of Processes) as 12 to the radio network controller through radio link reconfiguration ready.
[0096] Step 540: The radio network...
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