Method and apparatus for spectrum spreading of a pulse-density modulated waveform
US-10148473-B2 · Dec 4, 2018 · US
US9794095B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9794095-B2 |
| Application number | US-201514755602-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 30, 2015 |
| Priority date | Jul 18, 2014 |
| Publication date | Oct 17, 2017 |
| Grant date | Oct 17, 2017 |
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A gateway device having a baseband processor for processing a plurality signals carrying a digital information modulated in the form of chirp signal, the chirp signals being either base chirps, for which the frequency changes from an initial instant to a final instant according to a predetermined base chirp function or modulated chirps, whose instantaneous frequencies vary according to one of a plurality of a functions that differ from said base chirp function, characterized in that the gateway device is arranged for simultaneously demodulating a plurality of signals having received at a same frequency and exhibiting different bitrates.
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The invention claimed is: 1. A gateway device having a processor for processing a plurality of signals carrying a digital information modulated in the form of chirp signals, the chirp signals being either base chirps, for which the frequency changes from an initial instant to a final instant according to a predetermined base chirp function or modulated chirps, whose instantaneous frequencies vary according to one of a plurality of a functions that differ from said base chirp function, each base chirp and each modulated chirp corresponding to a symbol of a modulation alphabet, the gateway device further comprising one demodulator or several demodulators, arranged for reconstructing the digital information based on said symbols, and for simultaneously demodulating a plurality of signals, whose frequencies overlap, and having different bitrates, and different spreading factors or chirp lengths, wherein the different spreading factors or chirp lengths provide for orthogonality between the plurality of signals. 2. The gateway device of claim 1 , wherein each chirp signal being limited in time between an initial instant, at which the chirp signal has an initial instantaneous frequency and an initial phase; and a final instant at which the chirp signal has a final instantaneous frequency and a final phase, the phase of the chirp signal being essentially continuous. 3. The gateway device of claim 1 , wherein the instantaneous frequency of the modulated chirps varies according to a function that is a cyclical shift of the base chirp function. 4. The gateway device of claim 1 , further comprising a plurality of frequency converters tuned to detect signals in a plurality of frequency sub-bands. 5. The gateway device of claim 1 , wherein said chirp signals include preamble parts, and the gateway device further comprises a preamble search engine and a plurality of demodulators, the preamble search engine being operatively arranged to scan the signals generated from a plurality of frequency converters, identify said preamble parts for all data rates and, when a preamble is detected, cause a corresponding message to be decoded in one of said plurality of demodulators. 6. The gateway device of claim 5 , wherein the preamble search engine is arranged to detect sequences of a predetermined number of base chirps. 7. The gateway device of claim 5 , further comprising a packet arbiter unit, operatively arranged for assigning messages corresponding to said detected preambles to one demodulator, based on a set of predetermined rules. 8. The gateway device of claim 1 , further comprising at least one modulation unit for encoding a digital message into a modulated signal in which the digital information is encoded as transmitted chirp signals. 9. The gateway device of claim 8 , wherein each transmitted chirp being limited in time between an initial instant, at which the signal has an initial instantaneous frequency and an initial phase; and a final instant at which the signal has a final instantaneous frequency and a final phase, the phase of the signal being essentially continuous. 10. The gateway device of claim 1 , further comprising a Frequency Shift Keying (FSK) or Gaussian Frequency-Shift-Keying (GFSK) modulator. 11. The gateway device of claim 1 , wherein the chirp signals being modulated in such a way that signals having different bitrates are orthogonal. 12. A gateway device having a processor for processing a plurality signals carrying a digital information modulated in the form of chirp signals, the chirp signals being either base chirps, for which the frequency changes from an initial instant to a final instant according to a predetermined base chirp function or modulated chirps, whose instantaneous frequencies vary according to one of a plurality of a functions that differ from said base chirp function, the gateway device further comprising a plurality of demodulators, arranged for simultaneously demodulating a plurality of signals having different bitrates, wherein said chirp signals include preamble parts, and the gateway device further comprising a preamble search engine, the preamble search engine being operatively arranged to scan the signals generated from frequency converters, identify said preamble parts for all data rates and, when a preamble is detected, cause a corresponding message to be decoded in one of said plurality of demodulators, the gateway device further comprising a packet arbiter unit, operatively arranged for assigning messages corresponding to said detected preambles to one demodulator of the plurality of demodulators. 13. The gateway device of claim 12 , wherein the packet arbiter being arranged for assigning the messages corresponding to said detected preambles to one demodulator of the plurality of demodulators based on a set of predetermined rules.
Demodulator circuits; Receiver circuits · CPC title
using chirp · CPC title
Chirp modulation (for spread spectrum techniques H04B1/69) · CPC title
Gateway arrangements · CPC title
Spread spectrum techniques · CPC title
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