Determination method, terminal and network equipment
A determination method and technology of network equipment, applied in the field of communication, to achieve the effect of reducing the probability of delay and improving communication efficiency and effectiveness
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example 1
[0067]Example 1: Assume that the starting position of the nth candidate transmission opportunity in period P is located at the Kth OFDM symbol after the end position of the n-1th candidate transmission opportunity, that is, the time between two adjacent candidate transmission opportunities The domain interval is K-1, and the time-domain resource length of each candidate transmission opportunity in period P is L OFDM symbols, and the starting position of the first candidate transmission opportunity is the S-th OFDM symbol of the period length, where , the number M of candidate transmission opportunities in period P can be calculated according to the following formula: M=floor((P−S−1) / (L+K−1)), S>=1, K>=0.
example 2
[0068] Example 2: Assume that the starting position of the nth candidate transmission opportunity in period P is located at the Kth OFDM symbol after the end position of the n-1th candidate transmission opportunity, that is, the time between two adjacent candidate transmission opportunities The domain interval is K-1, and the time-domain resource length of each candidate transmission opportunity in the period P is L OFDM symbols. At the same time, the time window length of all candidate transmission opportunities in the period P is T. At this time, the period The number M of candidate transmission opportunities in P can be calculated according to the following formula: M=floor((T) / (L+K−1)), S>=1, K>=0.
[0069] Step 202: The terminal determines M candidate transmission opportunities of the uplink data channel in the first period according to the first information.
[0070] Optionally, in the embodiment of the present invention, the above step 202 specifically includes the foll...
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