Wireless device and method for low power and low data rate operation

US9537699B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9537699-B2
Application numberUS-201514719733-A
CountryUS
Kind codeB2
Filing dateMay 22, 2015
Priority dateNov 21, 2011
Publication dateJan 3, 2017
Grant dateJan 3, 2017

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  1. Title

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  2. Abstract

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

Embodiments of a wireless device and method for transmitting a packet comprising one or more orthogonal frequency division multiplexed (OFDM) transmission symbols are generally described herein. In some embodiments, the wireless device may be configured to map data to active tones and map zeroes to nulled tones of a set of OFDM tones to generate an OFDM symbol comprising both the active and the nulled tones. The number of active and nulled tones may be based on a nulling factor. The OFDM symbol may be down-clocked to generate an OFDM transmission symbol for transmission over a reduced transmission bandwidth. Accordingly, low power may be used for very low data rate transmissions, which may be suitable for sensor devices.

First claim

Opening claim text (preview).

What is claimed is: 1. A non-transitory computer-readable storage medium that stores instructions for execution by one or more processors of a wireless device to configure the wireless device for transmission of a packet comprising one or more orthogonal frequency division multiplexed (OFDM) transmission symbols, the instructions to configure the wireless device to: map data to active tones and map zeroes to nulled tones of a set of OFDM tones to generate an OFDM symbol comprising both the active and the nulled tones, the number of active and nulled tones being based on a nulling factor; and generate a packet comprising one or more OFDM transmission symbol from the generated OFDM symbol for transmission over a transmission bandwidth. 2. The non-transitory computer-readable storage medium of claim 1 , wherein the set of OFDM tones of the OFDM symbol comprises a predetermined number of tones; and wherein the number of active tones of the set and the number of nulled tones of the set is determined based on the nulling factor; and wherein the OFDM symbol is generated by performing an inverse Fourier transform on both active and the nulled tones. 3. The non-transitory computer-readable storage medium of claim 2 , wherein the nulling factor indicates a portion of tones of the set of tones that are active; and wherein the OFDM transmission symbol further includes pilot tones, guard tones and a cyclic prefix. 4. The non-transitory computer-readable storage medium of claim 3 , wherein the packet comprises a physical layer service data unit (PSDU), the PSDU comprising a plurality of OFDM transmission symbols, wherein the data that is mapped to the active tones is received as part of a media-access control (MAC) layer protocol data unit (MPDU); and wherein the instructions further configure the one or more processors to calculate a PSDU length based at least on the nulling factor, a size of the MPDU, and a number of OFDM symbols to be transmitted as part of the PSDU. 5. The non-transitory computer-readable storage medium of claim 4 , wherein the instructions further configure the one or more processors to: calculate a number of padding bits based on a length of the PSDU; and add the calculated number of padding bits to generate the PSDU, wherein the data bits and the padding bits of the PSDU are mapped to the active tones and are not mapped to the nulled tones. 6. The non-transitory computer-readable storage medium of claim 5 , wherein the instructions further configure the one or more processors to include the nulling factor in a signaling field of a header portion of the PSDU for use by a receiver in decoding the PSDU. 7. The non-transitory computer-readable storage medium of claim 5 , wherein the instructions further configure the one or more processors to: receive a configuration signal from an access point indicating the nulling factor; and determine the number of active tones and the number of nulled tones based on the nulling factor. 8. The non-transitory computer-readable storage medium of claim 5 , wherein the instructions further configure the one or more processors to: multiplex the data that is to be mapped to the active tones with the zeroes that are to be mapped to the nulled tones; and perform an inverse-discrete Fourier transform (IDFT) on the multiplexed data to generate a time-domain signal corresponding to the OFDM symbol having the data on the active tones and zeroes on the nulled tones. 9. The non-transitory computer-readable storage medium of claim 8 , wherein to generate the OFDM transmission symbol, the wireless device is configured to down-clock the OFDM symbol to generate the OFDM transmission symbol for transmission over a reduced transmission bandwidth. 10. The non-transitory computer-readable storage medium of claim 9 , wherein the time-domain signal has a transmission bandwidth based on a sample clock rate, wherein the instructions further configure the one or more processors to: perform the IDFT based on the sample clock rate; and perform a digital-to-analog conversion on the time-domain signal based on the sample clock rate to generate the OFDM transmission symbol having the transmission bandwidth, wherein the sample clock rate is a down-clocked sample clock rate configured to reduce the transmission signal bandwidth by a factor of ten or more. 11. The non-transitory computer-readable storage medium of claim 10 , wherein the instructions further configure the one or more processors to configured the wireless device to: upconvert the time domain signals to a transmission frequency of between 800 MHz and 1.0 GHz; and amplify the signals at the transmission frequency with a power amplifier, wherein the time-domain signals for transmission generated by the IDFT comprise a plurality of tones that are evenly spaced across the transmission bandwidth, the plurality of tones comprising the active and the nulled tones. 12. The non-transitory computer-readable storage medium of claim 11 , wherein the active tones are substantially evenly spaced across the transmission bandwidth allowing for a reduction in a peak-to-average power ratio (PAPR) of the signals for transmission. 13. The non-transitory computer-readable storage medium of claim 11 , wherein when the sample clock rate is down-clocked by one-tenth, the transmission bandwidth comprises bandwidths of 2 MHz, 4 MHz, 8 MHz or 16 MHz using sets of 52, 108, 234 and 468 tones, respectively. 14. A non-transitory computer-readable storage medium that stores instructions for execution by one or more processors of a wireless device to configure the wireless device for transmission of one or more orthogonal frequency division multiplexed (OFDM) transmission symbols, the operations to configure the wireless device to: map data to active tones and map zeroes to nulled tones of a set of OFDM tones to generate an OFDM symbol comprising both the active and the nulled tones, the number of active and nulled tones being based on a nulling factor; and down-clock the OFDM symbol to generate an OFDM transmission symbol for transmission over a reduced transmission bandwidth. 15. The non-transitory computer-readable storage medium of claim 14 , wherein the instructions further configure the wireless device to: multiplex data that is to be mapped to the active tones with the zeroes that are to be mapped to the nulled tones; and perform an inverse-discrete Fourier transform (IDFT) on the multiplexed data to generate a time-domain signal corresponding to the OFDM symbol having the data on the active tones and zeroes on the nulled tones. 16. The non-transitory computer-readable storage medium of claim 15 , wherein the set of OFDM tones of the OFDM symbol comprises a predetermined number of tones, wherein the number of active tones of the set and the number of nulled tones of the set is determined based on the nulling factor; and wherein the OFDM symbol is generated by performing an inverse Fourier transform on both the active and the nulled tones. 17. The non-transitory computer-readable storage medium of claim 16 , wherein the OFDM symbol is part of a physical layer service data unit (PSDU), the PSDU comprising a plurality of OFDM transmission symbols, wherein the data that is mapped to the active tones is received as part of a MAC layer protocol data unit (MPDU); and wherein the instructions further configure the one or more processors to calculate a PSDU length based at least on the nulling factor, a size of the MPDU, and a number of OFDM symbols to be transmitted as part of the PSDU.

Assignees

Inventors

Classifications

  • Self-organising networks, e.g. ad-hoc networks or sensor networks · CPC title

  • Allocation of payload; Allocation of data channels, e.g. PDSCH or PUSCH · CPC title

  • taking into account the information rate · CPC title

  • using symbol repetition, e.g. time domain realization of distributed FDMA · CPC title

  • the frequencies being orthogonal, e.g. OFDM(A) or DMT · CPC title

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What does patent US9537699B2 cover?
Embodiments of a wireless device and method for transmitting a packet comprising one or more orthogonal frequency division multiplexed (OFDM) transmission symbols are generally described herein. In some embodiments, the wireless device may be configured to map data to active tones and map zeroes to nulled tones of a set of OFDM tones to generate an OFDM symbol comprising both the active and the…
Who is the assignee on this patent?
Intel Corp
What technology area does this patent fall under?
Primary CPC classification H04L27/2628. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Jan 03 2017 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).