Metrology radio communications system
A frequency hopping radio communications system includes a measurement station having a first clock and an interface station having a second clock. The measurement station transmits measurement information from a measurement event. The measurement information includes timing information relating the measurement event to the first clock. The interface station receives the measurement information and generates a measurement output including timing information relative to the second clock. One of the first and second clocks is designated as a master clock and a periodic clock adjustment of the other is performed to maintain synchronisation with the designated master clock. The timing information of the measurement output generated by the interface station takes into account any of the periodic clock adjustments that are applied between the occurrence of the measurement event and the generation of the measurement output. In this manner, jitter is reduced and metrology performance is improved.
1 . A frequency hopping radio communications system comprising a measurement station having a first clock and an interface station having a second clock, wherein:
the measurement station is configured to transmit measurement information arising from a measurement event, the measurement information including timing information that relates the measurement event to the first clock,
the interface station is configured to receive the measurement information from the measurement station and to generate a measurement output including timing information defined relative to the second clock;
one of the first and second clocks is designated as a master clock and a periodic clock adjustment of the other of the first and second clocks is performed to maintain synchronisation with the designated master clock;
the timing information of the measurement output generated by the interface station takes into account any of the periodic clock adjustments that are applied between occurrence of the measurement event and the generation of the measurement output; and
the measurement station is provided as part of a measurement device, the measurement device also including a measurement sensor.
2 . The frequency hopping radio communications system according to claim 1 , wherein the measurement information transmitted by the measurement station is timestamped relative to the time defined by the first clock.
3 . The frequency hopping radio communications system according to claim 2 , wherein the measurement station transmits information to the interface station using a series of frames and the measurement information is timestamped to define a time relative to an edge of a transmitted frame.
4 . The frequency hopping radio communications system according to claim 1 ,
wherein the first and second clocks each generate clock counts, and
the periodic clock adjustment comprises incrementing or decrementing the clock count of the other of the first and second clocks to maintain synchronisation with the designated master clock.
5 . The frequency hopping radio communications system according to claim 1 , wherein the periodic clock adjustment comprises the exchange of messages between the measurement and interface stations that include timing information.
6 . The frequency hopping radio communications system according to claim 1 , wherein the periodic clock adjustment is performed at regular intervals.
7 . The frequency hopping radio communications system according to claim 1 , wherein the second clock is the master clock and the periodic clock adjustment comprises adjusting the first clock to remain synchronised with the second clock.
8 . The frequency hopping radio communications system according to claim 1 , wherein the measurement station and the interface station comprise frequency hopping spread spectrum modems operating using a same hopping pattern.
9 . The frequency hopping radio communications system according to claim 1 , wherein the measurement sensor comprises a touch trigger sensor.
10 . The frequency hopping radio communications system according to claim 9 ,
wherein the measurement event comprises a touch trigger event as sensed by the touch trigger sensor.
11 . The frequency hopping radio communications system according to claim 10 , wherein the measurement output generated by the interface station comprises a trigger signal.
12 . The frequency hopping radio communications system according to claim 1 , wherein the measurement event comprises an asynchronous measurement event.
13 . The frequency hopping radio communications system according to claim 12 , wherein delay between the asynchronous measurement event being recorded by the measurement station and the generation of the measurement output by the interface station is unaffected by any periodic clock adjustments that are applied between the measurement event and the generation of the measurement output.
14 . A frequency hopping radio communications system comprising a measurement station having a first clock and an interface station having a second clock, wherein:
the measurement station is configured to transmit measurement information arising from a measurement event, the measurement information including timing information that relates the measurement event to the first clock;
the interface station is configured to receive the measurement information from the measurement station and to generate a measurement output including timing information defined relative to the second clock;
one of the first and second clocks is designated as a master clock and a periodic clock adjustment of the other of the first and second clocks is performed to maintain synchronisation with the designated master clock;
the timing information of the measurement output generated by the interface station takes into account any of the periodic clock adjustments that are applied between occurrence of the measurement event and the generation of the measurement output;
the measurement information transmitted by the measurement station is timestamped relative to a time defined by the first clock; and
the measurement station transmits information to the interface station using a series of frames and the measurement information is timestamped to define a time relative to an edge of a transmitted frame.
15 . The frequency hopping radio communications system according to claim 14 , wherein the measurement station and the interface station comprise frequency hopping spread spectrum modems operating using a same hopping pattern.
16 . A frequency hopping radio communications system, comprising a measurement station having a first clock and an interface station having a second clock, wherein:
the measurement station is configured to transmit measurement information arising from a measurement event, the measurement information including timing information that relates the measurement event to the first clock;
the interface station is configured to receive the measurement information from the measurement station and to generate a measurement output including timing information defined relative to the second clock;
one of the first and second clocks is designated as a master clock and a periodic clock adjustment of the other of the first and second clocks is performed to maintain synchronisation with the designated master clock;
the timing information of the measurement output generated by the interface station takes into account any of the periodic clock adjustments that are applied between occurrence of the measurement event and the generation of the measurement output; and
the measurement event comprises an asynchronous measurement event.
17 . The frequency hopping radio communications system according to claim 16 , wherein delay between the asynchronous measurement event being recorded by the measurement station and the generation of the measurement output by the interface station is unaffected by any periodic clock adjustments that are applied between the measurement event and the generation of the measurement output.
18 . The frequency hopping radio communications system according to claim 16 , wherein the measurement station and the interface station comprise frequency hopping spread spectrum modems operating using a same hopping pattern.