Method and Apparatus for Generating OFDM Signals
US-2019349231-A1 · Nov 14, 2019 · US
US10785076B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10785076-B2 |
| Application number | US-201916519979-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 23, 2019 |
| Priority date | Feb 15, 2016 |
| Publication date | Sep 22, 2020 |
| Grant date | Sep 22, 2020 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
A method in a transmitter circuit of generating a signal comprising a first sequence of OFDM symbols, which are to be transmitted within a frequency sub band of a second sequence of OFDM symbols is disclosed. A first cyclic prefix (CP) of the second sequence of OFDM symbols has a first duration, and a second CP of the second sequence of OFDM symbols has a second duration. In order to generate both the first and the second cyclic prefix with an integer number of equidistant samples, a first sampling rate is required. The method comprises generating the signal comprising the first sequence of OFDM symbols at a second sampling rate, lower than the first sampling rate, and adjusting a sampling phase during CPs.
Opening claim text (preview).
The invention claimed is: 1. A method in a transmitter circuit of generating a signal comprising a sequence of an integer number of OFDM symbols, for transmission in a frequency sub band, wherein the method comprises: generating the signal comprising the sequence of OFDM symbols at a sampling rate of 240 kHz; adjusting a sampling phase during cyclic prefixes of the OFDM symbols. 2. The method of claim 1 , wherein a first cyclic prefix for one or more of the sequence of OFDM symbols has a duration of 160/30.72 μs, a second cyclic prefix for one or more of the sequence of OFDM symbols has a second duration of 144/30.72 μs, and a subcarrier spacing of the OFDM symbols of the sequence of OFDM symbols is 15 kHz. 3. The method of claim 1 , wherein a first cyclic prefix for one or more of the sequence of OFDM symbols has a first duration, a second cyclic prefix for one or more of the sequence of OFDM symbols has a second duration, and the second duration is shorter than the first duration, such that in order to generate both the first and the second cyclic prefix with an integer number of equidistant samples, a first sampling rate of 1.92 MHz would be required. 4. The method of claim 3 , wherein the first cyclic prefix is an initial cyclic prefix of the sequence of OFDM symbols, and all subsequent cyclic prefixes of the sequence of OFDM symbols have the second duration. 5. The method of claim 4 , wherein OFDM symbols of the sequence of OFDM symbols have 12 subcarriers. 6. The method of claim 5 , wherein the sequence of OFDM symbols is transmitted in a Third-Generation Partnership Project (3GPP) Narrow-Band Internet-of-Things (NB-IOT) system and corresponds to a slot. 7. The method of claim 1 , wherein adjusting the sampling phase comprises setting an initial sample instant during an OFDM symbol to occur a non-integer multiple of periods at the sampling rate after a final sample instant of a preceding OFDM symbol. 8. A transmitter circuit for generating a signal comprising a sequence of an integer number of OFDM symbols, for transmission in a frequency sub band, wherein the transmitter circuit comprises a digital-to-analog converter configured to generate the signal comprising the sequence of OFDM symbols at a sampling rate of 240 kHz; and a control circuit configured to adjust a sampling phase of the digital-to-analog converter during cyclic prefixes of the OFDM symbols. 9. The transmitter circuit of claim 8 , wherein a first cyclic prefix for one or more of the sequence of OFDM symbols has a duration of 160/30.72 μs, a second cyclic prefix for one or more of the sequence of OFDM symbols has a second duration of 144/30.72 μs, and a subcarrier spacing of the OFDM symbols of the sequence of OFDM symbols is 15 kHz. 10. The transmitter circuit of claim 8 , wherein a first cyclic prefix for one or more of the sequence of OFDM symbols has a first duration, a second cyclic prefix for one or more of the sequence of OFDM symbols has a second duration, and the second duration is shorter than the first duration, such that in order to generate both the first and the second cyclic prefix with an integer number of equidistant samples, a first sampling rate of 1.92 MHz would be required. 11. The transmitter circuit of claim 10 , wherein the first cyclic prefix is an initial cyclic prefix of the sequence of OFDM symbols, and all subsequent cyclic prefixes of the sequence of OFDM symbols have the second duration. 12. The transmitter circuit of claim 11 , wherein OFDM symbols of the sequence of OFDM symbols have 12 subcarriers. 13. The transmitter circuit of claim 12 , wherein the transmitter is configured to transmit the sequence of OFDM symbols in a Third-Generation Partnership Project (3GPP) Narrow-Band Internet-of-Things (NB-IOT) system, the sequence of OFDM symbols corresponding to a slot. 14. The transmitter circuit of claim 8 , wherein adjusting the sampling phase comprises setting an initial sample instant during an OFDM symbol to occur a non-integer multiple of periods at the sampling rate after a final sample instant of a preceding OFDM symbol. 15. An electronic device comprising the transmitter circuit of claim 8 . 16. The electronic device of claim 15 , wherein the electronic device is a machine-type communication (MTC) device. 17. The electronic device of claim 15 , wherein the electronic device is a network node for a cellular communication system.
Inter-user or inter-terminal allocation · CPC title
Cyclic extensions · CPC title
Digital/analogue converters ({H03M1/001 – } H03M1/10 take precedence) · CPC title
Reconfigurable analogue/digital or digital/analogue converters (H03M1/02 takes precedence) · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.