Transmission method of orthogonal extension block, receiving method thereof and system thereof
A transmission method and extended block technology, applied in the field of receiving method and its system, orthogonal extended block transmission method, to achieve the best utilization effect
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Embodiment 1
[0086] The orthogonal extension block transmission method and system thereof in this embodiment can flexibly control the data block length and allocate data blocks to each channel according to the available transmission resources of the system (such as physical layer sub-channel bandwidth, channel quality, and channel capacity, etc.) and service requirements. The spreading code of the service, the spreading code of each service is configured according to the change of transmission channel characteristics and service requirements, achieving the best compromise in meeting service requirements and improving spectrum efficiency.
[0087] Such as image 3 As shown, the system and implementation method steps of this embodiment are as follows:
[0088] A1. The resource scheduling and control module determines transmission parameters according to business requirements and available transmission resources of the system (such as channel bandwidth, channel quality, and channel capacity, ...
Embodiment 2
[0118] The method and system of this embodiment flexibly control the length of the data block, the number of extension stages and multi-stage extension codes for each service according to the available transmission resources of the system (such as physical layer sub-channel bandwidth, channel quality, and channel capacity, etc.) and service requirements , and the number of extension levels and extension codes can be changed according to the characteristics of the transmission channel and the change of traffic volume, so as to achieve the best compromise in terms of meeting business requirements and improving spectrum efficiency. One channel of business can be completed using one or more physical layer sub-channels For transmission, important services can be transmitted through physical layer sub-channels with high priority.
[0119] Such as Figure 5 As shown, the implementation steps of the transmission method and the transmission system are as follows:
[0120] C1. The reso...
Embodiment 3
[0171] The method and system of this embodiment are basically the same as those of Embodiment 2, and the focus is on realizing the diversity effect through spreading code hopping. According to business requirements, the resource scheduling and control module assigns a hopping pattern to each physical layer sub-channel, and the physical layer sub-channel selects a spreading code for each time slice according to the hopping pattern for data block expansion. The blocks use different spreading codes, thereby realizing the spreading code hopping diversity gain.
[0172] Such as Figure 10 As shown, the implementation steps of the method and the transmission system are as follows:
[0173] E1. The resource scheduling and control module determines block transmission parameters and extended parameters according to business requirements and system available transmission resources (such as physical layer subchannel bandwidth, channel quality, and channel capacity, etc.), and constructs...
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