WIRELESS OPTICAL COMMUNICATION DATA TRANSMISSION APPARATUS AND METHOD
20230283381 · 2023-09-07
Inventors
Cpc classification
International classification
Abstract
The present invention provides a wireless optical communication data transmission apparatus and method, including a transmit module and a receive module, where the transmit module includes a transmission gate, and the transmit module is configured to convert serial data into multipath control signals to control the transmission gate to output an electrical signal, convert the electrical signal into an optical signal, and transmit the optical signal to the receive module; and the receive module includes a peak value detector and a comparator group, and the receive module is configured to convert the received optical signal into the electrical signal and output the serial data after threshold determination by the comparator group, where the peak value detector provides a reference voltage to the comparator group according to the received electrical signal, and the comparator group performs voltage division according to the reference voltage to determine a threshold.
Claims
1. A wireless optical communication data transmission apparatus, comprising a transmit module and a receive module, wherein the transmit module comprises a transmission gate, and the transmit module is configured to convert serial data into multipath control signals to control the transmission gate to output an electrical signal, convert the electrical signal into an optical signal, and transmit the optical signal to the receive module; and the receive module comprises a peak value detector and a comparator group, and the receive module is configured to convert the received optical signal into the electrical signal and output the serial data after threshold determination by the comparator group, wherein the peak value detector provides a reference voltage to the comparator group according to the received electrical signal, and the comparator group performs voltage division according to the reference voltage to determine a threshold.
2. The wireless optical communication data transmission apparatus according to claim 1, wherein the transmission gate is connected to a reference voltage circuit, the reference voltage circuit is connected to a power supply, the reference voltage circuit is configured to perform voltage division on the power supply to provide a reference voltage to the transmission gate, and the transmission gate is configured to output a reference voltage signal according to the plurality of paths of control signals.
3. The wireless optical communication data transmission apparatus according to claim 1, wherein the transmit module comprises a serial-to-parallel converter and a decoder that are sequentially connected, the decoder is connected to the transmission gate, the serial-to-parallel converter is configured to convert the serial data into a parallel signal and transmit the parallel signal to the decoder, and the decoder is configured to output one path of control signal of strobe data to control the transmission gate to output the electrical signal.
4. The wireless optical communication data transmission apparatus according to claim 3, wherein the transmit module further comprises a pulse shaping filter, a light source driving circuit, and a wireless optical communication light source that are sequentially connected, the pulse shaping filter is connected to the transmission gate, the pulse shaping filter is configured to perform pulse shaping on the electrical signal outputted by the transmission gate and output the pulse shaped electrical signal to the light source driving circuit, and the light source driving circuit is configured to drive the wireless optical communication light source to convert the electrical signal into the optical signal for transmission.
5. The wireless optical communication data transmission apparatus according to claim 1, wherein the receive module comprises a photoelectric converter and a peak clipping filter that are sequentially connected, the peak clipping filter is connected to the peak value detector and the comparator group respectively, the photoelectric converter is configured to convert the received optical signal into the electrical signal, and the peak clipping filter is configured to perform peak noise cancellation on the electrical signal and output the processed electrical signal to the peak value detector and the comparator group.
6. The wireless optical communication data transmission apparatus according to claim 5, wherein a low-pass filter is arranged between the peak value detector and the comparator, the peak value detector is connected to the comparator group by the low-pass filter, and the comparator group is configured to perform voltage division according to a reference voltage V.sub.ref provided by the low-pass filter, wherein an i.sup.th level threshold is V.sub.ref/i, and perform determination according to a relationship between the threshold and the electrical signal inputted in the peak clipping filter to output a parallel signal.
7. The wireless optical communication data transmission apparatus according to claim 1, wherein the output of the comparator group is connected to a parallel-to-serial converter, the parallel-to-serial converter is configured to convert the parallel signal into the serial data for output, the output of the parallel-to-serial converter is connected to an error detector, an output of the error detector is connected to the comparator group, and the error detector is configured to analyze an error component according to the serial data and adjust a determination threshold of the comparator group according to an analysis result.
8. A wireless optical communication data transmission method, wherein the wireless optical communication data transmission apparatus according to claim 1 is used to perform data transmission, and the method comprises steps of: converting, by the transmit module, serial data into multipath control signals to control the transmission gate to output an electrical signal, converting the electrical signal into an optical signal, and transmitting the optical signal to the receive module; and converting, by the receive module, the received optical signal into the electrical signal, and outputting the serial data after threshold determination by the comparator group, wherein the peak value detector provides a reference voltage to the comparator group according to the received electrical signal, and the comparator group performs voltage division according to the reference voltage to determine a threshold.
9. The wireless optical communication data transmission method according to claim 8, wherein the transmit module converts the serial data into log.sub.2 M paths of parallel signals, the decoder outputs one path of M paths for strobing, the decoder controls a high-speed transmission gate to send one path of transmission reference voltage, the reference voltage is obtained by performing voltage division on the power supply, a voltage of the power supply is V.sub.cc, when
10. The wireless optical communication data transmission method according to claim 8, wherein the serial data outputted after the threshold determination by the comparator group in the receive module is connected to the error detector, the error detector detects the error rates of M symbols, and if an error rate corresponding to an i.sup.th symbol exceeds 2/M of an error ratio, the difference between two adjacent determination thresholds of the i.sup.th symbol is increased to adjust a determination threshold of the comparator.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020]
[0021]
[0022]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0023] The present invention is further described below with reference to the accompanying drawings and specific embodiments, to enable a person skilled in the art to better understand and implement the present invention. However, the embodiments are not used to limit the present invention.
Embodiment 1
[0024] Referring to
[0027] Specifically, the transmit module: an input of the serial data is connected to a serial-to-parallel converter, and is converted into log.sub.2 M paths of parallel signals; the parallel signals outputted by the serial-to-parallel converter are connected to a decoder, so that the decoder outputs one path of M paths for strobing; the output of the decoder is connected to a high-speed transmission gate, the high-speed transmission gate is controlled to send one path of transmission reference voltage, the reference voltage is obtained by performing voltage division on the power supply, if
a voltage sent by an i.sup.th path of transmission gate is
and when
the voltage sent by the i.sup.th path of transmission gate is
the signal outputted by the high-speed transmission gate is connected to a pulse shaping filter, the pulse shaping filter shapes an inputted pulse signal, to cancel inter-symbol crosstalk; and an output of the pulse shaping filter is connected to a light source driving circuit, and the light source driving circuit converts the electrical signal into the optical signal; [0028] the receive module: a photoelectric converter converts the received optical signal into the electrical signal; an output of the photoelectric converter is connected to a peak clipping filter to perform peak noise cancellation, to ensure that the peak value detector detects an actual peak value of the received signal; an output of the peak clipping filter is connected to the peak value detector and the comparator, and the peak value detector is connected to the comparator by a low-pass filter, to provide a reference voltage to the comparator group; the comparator performs voltage division according to a reference voltage V.sub.ref provided by the low-pass filter to obtain a threshold as the comparator group, and an i.sup.th level threshold is V.sub.ref/i; the comparator performs determination according to a relationship between the inputted signal and the threshold to output M paths of parallel signals; the output of the comparator group is connected to a parallel-to-serial converter, and is converted into the serial data for output; the output of the parallel-to-serial converter is connected to an error detector, to analyze an error component; and an output of the error detector is connected to the comparator group, and a determination threshold of the comparator is adjusted according to error analysis.
[0029] In the apparatus, the transmission gate is used to perform high-speed low-delay M-PAM signal transmission. In addition, a method of using the peak value detector and the comparator group to dynamically adjust a determination threshold is used, so that the impact of a communication distance and a communication position on communication in wireless optical communication can be reduced, and the disadvantage that only fixed-point communication is allowed in wireless optical communication can be overcome. The present invention can improve the position flexibility of a transmit end and a receive end.
Embodiment 2
[0030] Referring to
Embodiment 3
[0031] Referring to
Embodiment 4
[0032] Referring to
[0035] Preferably, the transmit module converts the serial data into log.sub.2 M paths of parallel signals, the decoder outputs one path of M paths for strobing, the decoder controls a high-speed transmission gate to send one path of transmission reference voltage, the reference voltage is obtained by performing voltage division on the power supply, a voltage of the power supply is V.sub.cc, when
a voltage sent by an i.sup.th path of transmission gate is
and when
the voltage sent by the i.sup.th path of transmission gate is
[0036] Preferably, the serial data outputted after the threshold determination by the comparator group in the receive module is connected to the error detector, the error detector detects the error rate of M symbols, and if an error rate corresponding to an i.sup.th symbol exceeds 2/M of an error ratio, the difference between two adjacent determination thresholds of the i.sup.th symbol is increased to adjust a determination threshold of the comparator. Through error analysis, the threshold value is adjusted to make reception and determination more reliable.
[0037] The foregoing embodiments are merely preferred embodiments used to fully describe the present invention, and the protection scope of the present invention is not limited thereto. Equivalent replacements or variations made by a person skilled in the art to the present invention all fall within the protection scope of the present invention. The protection scope of the present invention is as defined in the claims.