Pager based monitoring
First Claim
1. A system for monitoring at a plurality of remote sites the values of selected parameters, the system for use with a wireless digital communications system and a monitor/encoder for determining and encoding the values of the selected parameters in a first sequence of bytes representing the encoded values, the physical units in which the encoded values were measured, and the times and dates of the measurement of the encoded values, the system comprising:
- a plurality of remote stations, each including a discrete data packager for inserting into the first sequence of bytes description bytes describing a transformation of the first sequence of bytes into a second shortened sequence of bytes and a discrete transmitter for transmitting the second sequence of bytes to the bi-directional wireless digital communications system; and
a user station for receiving the second sequence of bytes from the bi-directional wireless digital communications system and extracting the encoded values of the selected parameters from the second sequence of bytes.
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Accused Products
Abstract
A remote monitoring system uses a bi-directional pager communications system for monitoring remote monitoring stations. Each remote station includes monitoring hardware, data storage for recording data collected by the monitor and a pager for transmitting the data to a user through a commercial pager system. The pager also receives control signals from the user. The remote station may include control devices for altering the monitoring process or varying other operating parameters. As a data communications system, the bi-directional pager or digital cellular PCS modem can be mated to most any monitoring device. This allows for inexpensive monitoring because the need for frequent visits to the remote site is eliminated. Where a monitored site is not within an area covered by a host pager service, a mobile pager host is used as an intermediary for collecting monitoring data and delivering control data.
16 Citations
17 Claims
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1. A system for monitoring at a plurality of remote sites the values of selected parameters, the system for use with a wireless digital communications system and a monitor/encoder for determining and encoding the values of the selected parameters in a first sequence of bytes representing the encoded values, the physical units in which the encoded values were measured, and the times and dates of the measurement of the encoded values, the system comprising:
a plurality of remote stations, each including a discrete data packager for inserting into the first sequence of bytes description bytes describing a transformation of the first sequence of bytes into a second shortened sequence of bytes and a discrete transmitter for transmitting the second sequence of bytes to the bi-directional wireless digital communications system; and
a user station for receiving the second sequence of bytes from the bi-directional wireless digital communications system and extracting the encoded values of the selected parameters from the second sequence of bytes.- View Dependent Claims (2, 3, 4, 5, 6, 7)
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8. A system for use in a cathodic protection system for pipeline monitoring in combination with a bi-directional wireless digital communications system for receiving signals from and transmitting signals to remote transceiver units, the system comprising:
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a plurality of remote stations, each including a monitor for measuring values of corrosion protection parameters, an encoder for encoding the values determined by the monitoring means, a recorder for recording data representing the encoded values, a receiver for receiving control signals from the bi-directional wireless digital communications system, a transmitter for transmitting the recorded data to the bi-directional wireless digital communications system, and a controller for controlling the transmitter to transmit recorded data to the bi-directional wireless digital communications system in response to receipt by the receiver of a control signal from the bi-directional wireless digital communications system; and
a user station including means for transmitting control signals to the bi-directional wireless digital communications system for transmission to the receivers of the remote stations, and means for receiving from the bi-directional wireless digital communications system recorded data transmitted to the bi-directional wireless digital communications system by the transmitters of the remote stations.
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9. A system for monitoring at a plurality of remote sites the values of selected parameters, the system for use with a bi-directional wireless digital communications system for receiving signals from and transmitting signals to remote transceiver units, the system comprising:
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a plurality of remote stations, each including a monitor for measuring values of the selected parameters, an encoder for encoding the values determined by the monitoring means, a recorder for recording data representing the encoded values, a receiver for receiving control signals from the communications system, a transmitter for transmitting the recorded data to the communications system, and a controller for controlling the transmitter to transmit recorded data to the communications system in response to receipt by the receiver of a control signal from the communications system;
a stationary host station including means for transmitting control signals to the communications system for transmission to the receivers of the remote stations, and means for receiving from the communications system recorded data transmitted to the communications system by the transmitters of the remote stations; and
a mobile host system including a global position sensor for determining the location of the mobile host system, the mobile host system configured to transmit control signals to the receiver of a remote station and receive recorded data transmitted from the remote station when it determines from the global position sensor that it is within range of the remote station, and transmit recorded data received from the remote station to the communications system when it determines from the global position sensor that it is within range of the communications system.
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10. A method for transmitting an original sequence of data symbols from a first location to a second location via a communications system, comprising:
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at the first location, shortening the original sequence of data symbols by deleting data symbols at predetermined positions in the original sequence of data symbols so as to form a shortened sequence of data symbols;
transmitting the shortened sequence of data symbols via the communications system from the first location to the second location; and
at the second location, inserting predetermined data symbols at predetermined positions in the shortened sequence of data symbols, whereby the original sequence of data symbols is reproduced identically at the second location. - View Dependent Claims (11, 13, 14, 15, 16, 17)
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12. A system for transmitting an original sequence of data symbols from a first location to a second location via a communications system, comprising:
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at the first location, a first processor for shortening the original sequence of data symbols by deleting data symbols at predetermined positions in the original sequence of data symbols so as to form a shortened sequence of data symbols;
a first transmitter for transmitting the shortened sequence of data symbols via the communications system from the first location to the second location; and
at the second location, a second processor for inserting predetermined data symbols at predetermined positions in the shortened sequence of data symbols, whereby the original sequence of data symbols is reproduced identically at the second location.
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Specification