Claims
- 1. A wireless modem unit (WMU) comprising:
a processor; a modulator controlled by the processor; a pre-preamble modulator controlled by the processor; a summation circuit connected to receive an output from the modulator and an output from the pre-preamble modulator; and an output stage connected to an output of the summation circuit; wherein a pre-preamble signal generated by the pre-preamble modulator alerts the output stage of an impending data burst.
- 2. The wireless modem unit of claim 1, wherein the pre-preamble modulator produces a carrier at a frequency outside of a normal data band.
- 3. The wireless modem unit of claim 2, wherein the carrier is Amplitude Shift Key modulated.
- 4. The wireless modem unit of claim 3, further comprising a diplexer connected between the output stage and a transverter.
- 5. A transverter control system comprising:
a diplexer connected to a wireless modem unit (WMU) and receiving a downstream signal and outputting an upstream signal; a transmission path comprising:
a notch filter having an input connected to the upstream signal; an upconverter connected to the notch filter; and a transmitter switch connected to an output of the upconverter; a control path comprising:
a band pass filter having an input connected to the upstream signal; and a detector and demodulator unit connected to the band pass filter; wherein the detector and demodulator unit outputs a control signal to control the upconverter and the transmitter switch based on a pre-preamble signal received from the wireless modem unit.
- 6. A transverter control system for a wireless modem, the system comprising:
a wireless modem unit (WMU) comprising:
a processor; a modulator controlled by the processor; a pre-preamble modulator controlled by the processor; a summation circuit connected to receive an output from the modulator and an output from the pre-preamble modulator; and an output stage connected to an output of the summation circuit; wherein a pre-preamble signal generated by the pre-preamble modulator alerts the output stage of an impending data burst; and a transverter control system comprising:
a diplexer connected to a wireless modem unit (WMU) and receiving a downstream signal and outputting an upstream signal; a transmission path comprising:
a notch filter having an input connected to the upstream signal; an upconverter connected to the notch filter; and a transmitter switch connected to an output of the upconverter; a control path comprising:
a band pass filter having an input connected to the upstream signal; and a detector and demodulator unit connected to the band pass filter; wherein the detector and demodulator unit outputs a control signal to control the upconverter and the transmitter switch based on a pre-preamble signal received from the wireless modem unit.
- 7. A method of control of a transverter in a wireless access system, the method comprising:
creating a pre-preamble signal and a control data signal in a wireless modem unit (WMU); transmitting the pre-preamble signal as a notification signal; transmitting the control data signal to the transverter; detecting the pre-preamble signal at the transverter, and in response to the detected signal, disabling a transmitter switch; decoding and processing the control data signal; and resetting the transmitter switch.
- 8. A method of transverter control, the method comprising:
programming a modem to a low frequency; transmitting control data at the low frequency; re-programming the modem to an appropriate frequency to transmit actual data; modifying transverter parameters in response to the control data; and transmitting the actual data via the transverter.
- 9. A transverter pre-preamble signal detection circuit, the circuit comprising:
a tap connected to an upstream signal path; an amplifier connected to a tap output; a detector connected to an amplifier output; a comparator having a first input and a second input, the first input connected to a detector output, and the second input connected to a reference voltage; and a one-shot circuit connected to an output of the comparator, the one-shot controlling a power amplifier.
- 10. A transverter pre-preamble signal detection circuit having an automatic reference level determination, the circuit comprising:
a tap connected to an upstream signal path; an amplifier connected to a tap output; a detector connected to an amplifier output; a first filter having a fast response time connected to a detector output; a second filter having a slow response time connected to the detector output; a first comparator having a first input connected to the first filter and a second input connected to the second filter; and a one-shot circuit connected to an output of the first comparator, the one-shot circuit comprising:
a diode; a low pass filter connected to the diode; a reference voltage source; and a second comparator having a first input connected to the reference voltage source, and a second input connected to the low pass filter.
- 11. A transverter pre-preamble signal detection circuit, the circuit comprising:
a tap connected to an upstream signal path; a band pass filter connected to the tap; an amplifier connected to a band pass filter output; a detector connected to an amplifier output; and a comparator having a first input and a second input, the first input connected to a detector output, and the second input connected to a reference voltage; wherein the detector circuits detects control commands sent from a modem which are outside of a passband of the IF to RF conversions of the modem.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority from U.S. Provisional Patent Application entitled TRANSVERTER (TRANSCEIVER) CONTROL MECHANISM FOR A WIRELESS MODEM IN A BROADBAND WIRELESS ACCESS SYSTEM, filed Jan. 26, 2000, Application Ser. No. 60/178,121, the disclosure of which is herein incorporated by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60178121 |
Jan 2000 |
US |