Intelligent adjustable sacrificial anode and cathode protection device
A sacrificial anode and cathodic protection technology, which is applied in the field of intelligent adjustable sacrificial anode cathodic protection device, can solve the problems of lower work efficiency, accuracy impact, and many measurement points, so as to reduce management and operation costs, ensure stability, and performance reliable effect
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Embodiment 1
[0017] Such as figure 1 As shown, an intelligent adjustable sacrificial anode cathodic protection device, the device includes a single-chip microcomputer, signal processing unit, D / A conversion unit, IGBT power unit, battery management unit, keyboard unit, LCD display unit, sacrificial anode, buried pipeline , reference electrode, single chip microcomputer is respectively connected with signal processing unit, D / A conversion unit, battery management unit, LCD display unit, keyboard unit, IGBT power unit is respectively connected with D / A conversion unit, sacrificial anode, buried pipeline, signal The processing unit is connected to the reference electrode. The single-chip microcomputer is PIC16F873A, which is based on 8-bit high-performance 14-bit RISC instruction system, Harvard bus and two-level instruction stream structure single-chip microcomputer. PIC16F873A high-performance microcontroller includes 20 input / output programmable ports, 3 timers, 5-channel 10-bit A / D conve...
Embodiment 2
[0034] The single-chip microcomputer (CPU) enters the sleep state after being powered on and initialized.
[0035] 1. When any key is pressed, the LCD display unit will automatically light up to display the current actual protection potential. In this state, the minimum protection potential value can be set. Typically -0.85V (relative to saturated CU / CUSO4).
[0036] 2. Wait for 4 seconds to be awakened by the second pulse signal. After the RB5 port of the CPU supplies power to the signal processing unit, start the A / D converter channel 0 (RA0) to convert the actual potential signal into a 16-bit digital signal and store it in the CPU data register. The RB5 port of the CPU is powered off and enters the sleep state.
[0037] 3. After repeating step 2) 15 times (1 minute), the 15 times of data are averaged, and the error value e between the actual potential and the set minimum protection potential is calculated. The error value is proportionally amplified, integrated, and diff...
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