Remote monitoring system and method
Abstract
A remote control system for a modulatable device is provided. The remote control system comprises a receiver system coupled to the modulatable device and configured to obtain an output characteristic of the modulatable device, the receiver system being located remotely with respect to the modulatable device. The system further comprises a command signal setting system coupled to the receiver system and configured to use the output characteristic to generate a drive command signal and a bias system coupled to the command signal setting system and configured to receive the drive command signal and set a bias point of the modulatable device based on the drive command signal. The bias system is located locally with respect to the modulatable device. The command signal setting system and the bias system are coupled via a first optical conduit.
Claims
exact text as granted — not AI-modified1 . A remote control system for a modulatable device, the remote control system comprising:
a receiver system coupled to the modulatable device and configured to obtain an output characteristic of the modulatable device, wherein the receiver system is located remotely with respect to the modulatable device; a command signal setting system coupled to the receiver system and configured to use the output characteristic to generate a drive command signal; and a bias system coupled to the command signal setting system and configured to receive the drive command signal and set a bias point of the modulatable device based on the drive command signal, wherein the bias system is located locally with respect to the modulatable device, wherein the command signal setting system and the bias system are coupled via a first optical conduit.
2 . The remote control system of claim 1 wherein the receiver system is coupled to the modulatable device via a second optical conduit.
3 . The remote control system of claim 1 , wherein the modulatable device comprises a device selected from the group consisting of optical modulators, RF modulators, and laser diodes.
4 . The remote control system of claim 1 , wherein the command signal setting system is configured to generate the drive command signal by mapping a transfer function and obtaining an optimum position for the drive command signal.
5 . The remote control system of claim 4 , wherein the modulatable device comprises an optical modulator, wherein the output characteristic comprises an output power, and wherein the command signal setting system is configured to generate the drive command signal based on a maximum output power and a minimum output power generated by the modulatable device.
6 . The remote control system of claim 5 , wherein the command signal setting system is configured to generate the drive command signal by taking an average of a first drive signal corresponding to the maximum output power and a second drive signal corresponding to the minimum output power.
7 . The remote control system of claim 1 , wherein the command signal setting system is configured to generate the drive command signal based on output characteristic signal distortion.
8 . The remote control system of claim 7 , wherein the command signal setting system is configured to generate the drive command signal based on minimization of second order harmonic components.
9 . The remote control system of claim 8 , wherein the receiver system includes a band pass filter centered about an expected second order output characteristic location, and the command signal setting system is configured to, during a training sequence, generate the drive command signal by increasing the drive signal until an output signal of the band pass filter is minimized and to then, during an operation sequence, use the drive command signal corresponding to the minimized output signal.
10 . The remote control system of claim 8 , wherein the command signal setting system further comprises a pilot tone generator and a band pass filter centered about an expected second order output of the pilot tone generator, and wherein the command signal setting system is further configured to generate a drive command signal corresponding to a minimum output signal of the band pass filter.
11 . The remote control system of claim 10 , wherein the pilot tone generator is configured to provide a pilot tone to the modulatable device.
12 . The remote control system of claim 11 , wherein the pilot tone is generated during a pre-scan mode of a magnetic resonance system.
13 . The remote control system of claim 11 , wherein the pilot tone is generated during a scan mode of a magnetic resonance system.
14 . The remote control system of claim 1 , wherein the modulatable device is configured for use in a magnetic resonance imaging system.
15 . A magnetic resonance (MR) system including a remote control system for a modulatable device, the magnetic resonance system comprising:
a modulatable device located within a magnetic field of the magnetic resonance system and configured to provide an output characteristic of the modulatable device to an output characteristic receive and command signal setting assembly situated outside the magnetic field; a bias system optically coupled to the output characteristic receive and command signal setting assembly and coupled to the modulatable device, the bias system configured to receive a drive command signal from the output characteristic receive and command signal setting assembly and to set a bias point of the modulatable device based on the drive command signal.
16 . The MR system of claim 15 , wherein the modulatable device is coupled to output characteristic receive and command signal setting assembly via an optical conduit.
17 . The MR system of claim 15 , wherein the modulatable device comprises a device selected from the group consisting of optical modulators, RF modulators, and laser diodes.
18 . The MR system of claim 15 , wherein the bias system is located within the magnetic field.
19 . The MR system of claim 15 , wherein the output characteristic receive and command signal setting assembly is configured to generate the drive command signal by mapping a transfer function and obtaining an optimum position for the drive command signal.
20 . The MR system of claim 19 , wherein the modulatable device comprises an optical modulator, wherein the output characteristic comprises an output power, and wherein the command signal setting system is configured to generate the drive command signal based on a maximum output power and a minimum output power generated by the modulatable device.
21 . The MR system of claim 20 , wherein the command signal setting system is configured to generate the drive command signal by taking an average of a first drive signal corresponding to the maximum output power and a second drive signal corresponding to the minimum output power.
22 . The MR system of claim 15 , wherein the command signal setting system is configured to generate the drive command signal based on output characteristic signal distortion.
23 . The MR system of claim 22 , wherein the command signal setting system further comprises a pilot tone generator and a band pass filter centered about an expected second order output of the pilot tone generator, and wherein the command signal setting system is further configured to generate a drive command signal corresponding to a minimum output signal of the band pass filter.
24 . The MR system of claim 23 , wherein the pilot tone generator is configured to provide a pilot tone to the modulatable device.
25 . The MR system of claim 23 , wherein the pilot tone is generated during a pre-scan mode of a magnetic resonance system.
26 . The MR system of claim 23 , wherein the pilot tone is generated during a scan mode of the magnetic resonance system.
27 . A method of remote control for a modulatable device comprising:
remotely obtaining an output characteristic of the modulatable device, wherein the receiver system is located remotely with respect to the modulatable device; using the output characteristic to generate a drive command signal; and locally obtaining the drive command signal and setting a bias point of the modulatable device based on the drive command signal.
28 . The method of claim 27 , wherein the locally obtaining is via an optical conduit.
29 . The method of claim 28 , wherein the drive command signal is generated by mapping a transfer function and obtaining an optical position for the drive command signal.
30 . The method of claim 29 wherein the modulatable device comprises an optical modulator, wherein the output characteristic comprises an output power, and the drive command signal is generated based on a maximum output power and a minimum output power generated by the modulatable device.
31 . The method of claim 30 , wherein the drive command signal is generated by taking an average of a first drive signal corresponding to the maximum output power and a second drive signal corresponding to the minimum output power.
32 . The method of claim 28 , wherein the drive command signal is generated based on output characteristic signal distortion.
33 . The method of claim 28 , wherein the modulatable device is adapted for use in a magnetic resonance system.
34 . The method of claim 33 , wherein the drive command signal is generated using a pilot tone.
35 . The method of claim 34 , wherein the pilot tone is generated during a pre-scan mode of a magnetic resonance system.
36 . The method of claim 34 , wherein the pilot tone is generated during a scan mode of the magnetic resonance system.Join the waitlist — get patent alerts
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