Infrared communication method and apparatus, storage medium and electronic apparatus
US-2024305382-A1 · Sep 12, 2024 · US
US9735880B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9735880-B2 |
| Application number | US-201514973133-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 17, 2015 |
| Priority date | Jan 8, 2015 |
| Publication date | Aug 15, 2017 |
| Grant date | Aug 15, 2017 |
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An optical transmitter includes a DMT modulating unit that allocates information signals to SCs and that generates a DMT signal by performing multi-level modulation on each of the information signals allocated to each of the SCs. The optical transmitter includes a mixer that shifts, on the basis of the probe result of the DMT signal and frequency information on a wireless signal that is input, the carrier frequency of the wireless signal so as not to overlap the SC to which the information signal in the DMT signal is allocated. Furthermore, the optical transmitter includes a multiplexing unit that multiplexes the DMT signal received from the DMT modulating unit and the wireless signal in which the carrier frequency has been shifted and outputs the multiplexed signal.
Opening claim text (preview).
What is claimed is: 1. A transmission device comprising a processor, wherein the processor executes a process comprising: allocating an information signal from among a plurality of information signals to a subcarrier in a plurality of subcarriers; generating a first signal by modulating each of the information signals allocated to each of the subcarriers; receiving a second signal; first acquiring first information on the first signal and second information on the second signal, the first information including a transmission characteristic of a frequency in a plurality of frequencies in the first signal and a signal level associated with the frequency, the second information including a carrier frequency of the second signal; subtracting a first signal level of the first signal associated with the carrier frequency of the second signal from a second signal level of the second signal associated with the carrier frequency of the second signal; second acquiring a signal level difference between the first signal level and the second signal level; third acquiring a conversion signal level by subtracting the signal level difference from a target signal level of the second signal, the target signal level corresponding to a signal level tailored to a counterpart device; searching a target frequency corresponding to the conversion signal level from the transmission characteristic; shifting the carrier frequency of the second signal to the target frequency searched by the searching, so that the subcarrier to which the information signal is allocated is different from the carrier frequency; multiplexing the first signal and the second signal shifted by the shifting; and outputting the multiplexed signal. 2. The transmission device according to claim 1 , wherein the shifting includes shifting the carrier frequency of the second signal to the target frequency that is associated with the subcarriers on a high frequency side. 3. The transmission device according to claim 1 , wherein the shifting includes shifting the carrier frequency of the second signal to the target frequency that is associated with a free subcarrier in the plurality of subcarriers in the first signal. 4. The transmission device according to claim 1 , wherein the shifting includes shifting the carrier frequency of the second signal to the target frequency of subcarrier other than the subcarriers in the first signal. 5. The transmission device according to claim 1 , wherein the subtracting includes adjusting, when determining the signal level difference is less than a predetermined threshold, the second signal level of the second signal. 6. The transmission device according to claim 1 , wherein the multiplexing includes allocating the shifted carrier frequency of the second signal to the subcarrier of the target frequency to multiplex the first signal and the second signal shifted by the shifting. 7. A transmitter comprising a processer, wherein the processor executes a process comprising: allocating an information signal from among a plurality of information signals to a subcarrier in a plurality of subcarriers; generating a first signal by modulating each of the information signals allocated to each of the subcarriers; receiving a second signal; first acquiring first information on the first signal and second information on the second signal, the first information including a transmission characteristic of a frequency in a plurality of frequencies in the first signal and a signal level associated with the frequency, the second information including a carrier frequency of the second signal; subtracting a first signal level of the first signal associated with the carrier frequency of the second signal from a second signal level of the second signal associated with the carrier frequency of the second signal; second acquiring a signal level difference between the first signal level and the second signal level; third acquiring a conversion signal level by subtracting the signal level difference from a target signal level of the second signal, the target signal level corresponding to a signal level tailored to a counterpart device; searching a target frequency corresponding to the conversion signal level from the transmission characteristic; shifting the carrier frequency of the second signal to the target frequency searched by the searching, so that the subcarrier to which the information signal is allocated is different from the carrier frequency; multiplexing the first signal and the second signal shifted by the shifting; and outputting the multiplexed signal. 8. A transmission method that causes a transmission device to perform a process comprising: allocating, by a processor of the transmission device, an information signal from among a plurality of information signals to a subcarrier in a plurality of subcarriers; generating, by the processor, a first signal by modulating each of the information signals allocated to each of the subcarriers; receiving a second signal; first acquiring, by the processor, first information on the first signal and second information on the second signal, the first information including a transmission characteristic of a frequency in a plurality of frequencies in the first signal and a signal level associated with the frequency, the second information including a carrier frequency of the second signal; subtracting, by the processor, a first signal level of the first signal associated with the carrier frequency of the second signal from a second signal level of the second signal associated with the carrier frequency of the second signal; second acquiring, by the processor, a signal level difference between the first signal level and the second signal level; third acquiring, by the processor, a conversion signal level by subtracting the signal level difference from a target signal level of the second signal, the target signal level corresponding to a signal level tailored to a counterpart device; searching, by the processor, a target frequency corresponding to the conversion signal level from the transmission characteristic; shifting, by the processor, the carrier frequency of the second signal to the target frequency searched by the searching, so that the subcarrier to which the information signal is allocated is different from the carrier frequency; multiplexing, by the processor, the first signal and the shifted second signal; and outputting, by the processor, the multiplexed signal.
Monitoring line transmitter or line receiver equipment · CPC title
Optical arrangements for wireless networks · CPC title
Details of coding or modulation · CPC title
Multicarrier modulation systems · CPC title
the frequencies being orthogonal, e.g. OFDM(A) or DMT · CPC title
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