IP Library › Granted Patent US 8,552,396
Granted Patent B2
US 8,552,396 · App. 12/566,797 · Granted Oct 8, 2013

Distributive, non-destructive real-time system and method for snowpack monitoring

Inventors: Jeff Frolik (Essex Junction, VT); Christian Skalka (Burlington, VT)
Assignee: The University of Vermont and State Agricultural College
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Quick Facts
Patent No.
US 8,552,396
App. No.
12/566,797
Granted
Oct 8, 2013
Kind
B2
Abstract

A ground-based system that provides quasi real-time measurement and collection of snow-water equivalent (SWE) data in remote settings is provided. The disclosed invention is significantly less expensive and easier to deploy than current methods and less susceptible to terrain and snow bridging effects. Embodiments of the invention include remote data recovery solutions. Compared to current infrastructure using existing SWE technology, the disclosed invention allows more SWE sites to be installed for similar cost and effort, in a greater variety of terrain; thus, enabling data collection at improved spatial resolutions. The invention integrates a novel computational architecture with new sensor technologies. The invention's computational architecture is based on wireless sensor networks, comprised of programmable, low-cost, low-powered nodes capable of sophisticated sensor control and remote data communication. The invention also includes measuring attenuation of electromagnetic radiation, an approach that is immune to snow bridging and significantly reduces sensor footprints.

Claims (35)

1. An apparatus for determining snow-water equivalence for snow pack monitoring, the apparatus comprising:

at least one wireless mote, wherein the wireless mote comprises:

at least one processor;

at least one random access memory (RAM);

at least one flash memory unit;

a communicator for wirelessly communicating;

at least one gamma ray detector for measuring ambient gamma ray attenuation due to snowpack water content, wherein the at least one gamma ray detector is connectable to the wireless mote.

2. The apparatus as in claim 1 further comprising:

at least one microwave source; and

at least one microwave detector paired with the at least one microwave source, wherein the at least one microwave source and the at least one microwave detector are connectable to the at least one wireless mote.

3. The apparatus as in claim 2 wherein the at least one microwave source comprises:

at least one 2.4 GHz microwave source;

at least one 2.4 GHz microwave detector;

at least one 5.1 GHz microwave source; and

at least one 5.1 GHz microwave detector.

4. The apparatus as in claim 1 , further comprising at least one ultrasonic transducer for measuring snowpack height, wherein the at least one ultrasonic transducer is connectable to the at least one wireless mote.

5. The apparatus as in claim 1 , further comprising at least one snowpack temperature device, wherein the at least one snowpack temperature device is connectable to the at least one wireless mote.

6. The apparatus as in claim 1 , further comprising a photovoltaic energy converter, wherein the photovoltaic energy converter is connectable to the at least one wireless mote.

7. An apparatus for determining snow-water equivalence for snow pack monitoring, the apparatus comprising:

at least one wireless mote, wherein the wireless mote comprises:

at least one processor;

at least one random access memory (RAM);

at least one flash memory unit;

a communicator for wirelessly communicating;

a program storage device readable by the mote, tangibly embodying a

program of instructions executable by the mote to perform a method for collecting sensor data, managing power requirements, wireless transmitting sensor data, receiving control data;

at least one gamma ray detector for measuring ambient gamma ray attenuation due to snowpack water content, wherein the at least one gamma ray detector is connectable to the wireless mote,

a 2.4 GHz microwave source:

a 2.4 GHz microwave detector paired with the 2.4 GHz microwave source, wherein the a 2.4 GHz microwave source and the 2.4 GHz microwave detector are connectable to the at least one wireless mote:

a 5.1 GHz microwave source; and

a 5.1 GHz microwave detector paired with the 5.1 GHz microwave source, wherein the a 5.1 GHz microwave source and the 5.1 GHz microwave detector are connectable to the at least one wireless mote.

8. The apparatus as in claim 7 wherein the at least one gamma ray detector comprises a cadmium zinc telluride (CZT) gamma ray detector.

9. The apparatus as in claim 7 , further comprising an ultrasonic transducer for measuring snowpack height, wherein the ultrasonic transducer is connectable to the at least one wireless mote.

10. The apparatus as in claim 7 further comprising at least one snowpack temperature gauge.

11. The apparatus as in claim 7 further comprising at least one solar cell connectable to the wireless mote.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 12, 2013
From: FROLIK, JEFF; SKALKA, CHRISTIAN
To: THE UNIVERSITY OF VERMONT AND STATE AGRICULTURAL COLLEGE
Reel/Frame 030986/0711 →
Continuity (2)
Provisional Application 61208654 · Feb 26, 2009
Related Publication 20110073771A1 · Mar 31, 2011