Data transmission method, system, and device
A data transmission method and transmission method technology, applied in the field of data transmission method, system and equipment, can solve the problem that paired spectrum and non-paired spectrum cannot be merged, and achieve an effect that is conducive to the development of integration
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Embodiment 1
[0040] Embodiment 1 of the present invention describes a unified frame structure that can be applied to both paired spectrum and unpaired spectrum. The frame structure reflects whether each subframe in a period is an uplink subframe or a downlink subframe, or whether it is For special subframes, the unified frame structure in Embodiment 1 is described in detail below by taking 10 ms cycle and 5 ms cycle as examples respectively.
[0041] 1. The frame structure of the first type has a period of 10 ms.
[0042] The first type of frame structure is as image 3 shown, where:
[0043] Subframe 0 is a D subframe, indicating that subframe 0 is a downlink subframe;
[0044]Subframe 1 is a D subframe, indicating that subframe 1 is a downlink subframe;
[0045] Subframe 2 is a U subframe, indicating that subframe 2 is an uplink subframe;
[0046] Subframe 3 to subframe 9 are F subframes (which may be called flexible subframes), which means that any subframe in subframe 3 to subframe...
Embodiment 2
[0070] Embodiment 2 of the present invention utilizes the unified frame structure described in Embodiment 1 for data transmission, such as Figure 9 As shown, it is a schematic diagram of the steps of data transmission in the second embodiment, which mainly includes the following steps:
[0071] Step 101: the network side determines frame structure configuration information within a period.
[0072] In this step 101, the network side determines that the frame structure configuration information may be any type of unified frame structure configuration information described in the first embodiment.
[0073] Taking the first type of frame structure as an example, the frame structure configuration information determined by the network side includes: subframe 0 is a downlink subframe, subframe 1 is a downlink subframe, subframe 2 is an uplink subframe, and any other subframe It is the information of the uplink subframe or the downlink subframe.
[0074] Taking the second type of ...
Embodiment 3
[0088] Case 1:
[0089] In Example 1 image 3 The frame structure of the first type is shown as an example, as shown in Figure 10(a), which is a schematic diagram of the frame structure corresponding to the carrier carrying data in the unpaired spectrum transmission mode. The network side and the terminal use the same carrier under the same carrier Figure 10(a) shows the frame structure for data transmission.
[0090] Case two:
[0091] In the transmission mode of paired spectrum, the full-duplex requirement of simultaneous transmission of uplink data and downlink data cannot be met by using a single carrier, and at least two carriers need to be used for data transmission. Therefore, at least two carriers for data transmission can be Carrier aggregation operation is performed to meet the full-duplex requirements of data transmission.
[0092] The carrier aggregation operation is defined in LTE, that is, more than two (including two) and less than five (including five) indep...
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