Load fill sensor system for grain storage vessels
A system for remotely indicating the level of grain being loaded into a grain trailer. Plural vertically oriented sensing strips are affixed to a trailer's hopper(s) sidewall of the trailer's hopper(s) at spaced locations. Signals from transducer elements on the strips are delivered to an electronics module on the trailer's forward wall. The electronics module includes a multiplexer for sampling the state of the strip transducers and a wireless transmitter for relaying the state data to a receiver and microprocessor in the cab of a towing vehicle. The microprocessor presents a visual display of height reached by the grain in a hopper as loading continues. Following system calibration where a pixel count of the load being displayed and a measured net weight of the load are determined using a scale, a calibration factor corresponding to the weight-per-pixel is stored for use in computing the weight and volume of subsequent loads.
1. The method for monitoring the volume of grain being stored in a grain storage bin comprising the steps of:
(a) providing a plurality of cables of a length sufficient to reach from a support member proximate a roof to a location proximate a floor of a grain storage bin, the cables each having a plurality of proximity sensors affixed thereto at regularly spaced intervals along the length of the cables;
(b) suspending each of the cables to a support structure disposed proximate the roof of the grain storage bin so the cables extend downward a predetermined distance toward the floor thereof at predetermined, spaced-apart locations there within;
(c) providing an electronic circuit coupled to receive input signals from said proximity sensors and for telemetering proximity sensor state information to a remote computing and display device;
(d) programming the remote computing and display device to compute and display at least one of a level of grain contained within the grain storage bin and a volume measured in bushels of the grain.
2. The method of claim 1 wherein the proximity sensors are photoelectric devices.
3. The method of claim 2 wherein the photoelectric devices comprise a light source and a light sensor each disposed in a light transmissive housing affixed to said cables where the housing defines a channel separating the light source form the light sensor and where entry of grain in the channel results in a change in the sensor state information.
4. The method of claim 1 and further providing moisture sensors on the plurality of cables at longitudinally spaced locations and coupled to said electronic circuit.
5. The method of claim 1 wherein the step of programming includes;
(a) calibrating the computing and display device by counting a number of pixels in a display of a known volume of grain in the grain storage bin; and
(b) computing and storing a bushel/pixel factor.
6. The method of claim 1 and further comprising the step of providing temperature sensors on the plurality of cables and where the electronic circuit telemeters temperature information to the remote computing and display device.