Stichopus japonicus culture pond monitoring device and control method
A technology of monitoring device and control method, applied in the direction of program control, comprehensive factory control, electrical program control, etc., can solve the problems of insufficient function and inability to use sea cucumber breeding, etc., to achieve the effect of fast response and maintaining stability
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0058] The breeding farm covers an area of 50 mu and is divided into 25 breeding ponds, each of which is a rectangle of 25 meters * 50 meters.
[0059] Such as figure 1 The illustrated embodiment is a monitoring device for sea cucumber culture ponds, including a control terminal 1 and 5 first terminals and 3 second terminals arranged above each culture pond; the control terminal includes a main controller 3 and a memory 2 , the first wireless transceiver 4, the first display 5, the alarm 6, the first computer 18, the water depth sensor 13, the clock chip 22 that is located in each culture pond, the first water inlet pipe that is located on each culture pond A solenoid valve 17 and the second solenoid valve 16 that are located on the outlet pipe of each culture pond; The water depth sensor, each first solenoid valve and each second solenoid valve are electrically connected;
[0060] Such as figure 2 , image 3 As shown, each first terminal includes a terminal controller ...
Embodiment 2
[0088] Embodiment 2 includes all structures and step parts of Embodiment 1, and Embodiment 2 also includes the following steps:
[0089] The standard range for setting the pH value is [R 1 , R 2 ], the main controller obtains the t of the breeding pond D i-d time to current time t i The curve S(t) of the mean value detected by the pH sensor, t i-d for t i At the previous moment, the time difference between the two is d; the volatilization and decomposition threshold SNR is pre-stored in the memory w ;
[0090] The main controller inputs S(t) into the stochastic resonance model pre-stored in the memory middle;
[0091] Among them, x(t) is the displacement of the vibrating particle, Ω is the angular frequency, f 0 is the signal frequency, A is a constant, r and ω are the set attenuation coefficient and the frequency of the linear vibration particle respectively, c is the set signal modulation coefficient, b is the set secondary noise ξ 2 (t) coefficient, ξ(t) is tricho...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 