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SVI-PLUS Activated Sludge Intelligent Diagnostics System

With intelligent data processing and remote monitoring capability, SVI-PLUS transforms traditional manual sludge observation into a fully automated, data-driven operation for higher efficiency and reliability.

    TECHNICAL SPECIFICATIONS

    Monitored Parameters

    SV, settling velocity, SVI (MLSS integration), sludge bulking warning, supernatant turbidity alarm

     

    Reporting Features

    Key parameter logging, AI diagnostics & analysis, process recommendations, trend analysis, archive export

    AI Processing Power

    >=40 TOPS·NVIDIA Ampere GPU·32 Tensor Cores

    Hardware Specs

    869 x 460 x 1750 mm·220V / 16A·>=11" touchscreen

    Communication

    Ethernet·RS485·4-20 mA analog

    Continuous Monitoring

    24 H

    Monitoring Points

    >=1 pt

    Industry application

    Return Sludge Ratio Control
    SV data-driven precise return sludge ratio adjustment for stable operations
    Granular Sludge Diagnostics
    Settling velocity analysis assesses granulation degree and guides process optimization
    Coagulant / Flocculant Optimization
    Settling feedback-driven precise chemical dosing to reduce reagent consumption
    SBR Capacity Enhancement
    Minimize idle settling time to maximize overall treatment throughput
    In-situ Capacity Expansion
    Assess secondary clarifier max capacity to safely increase influent loading
    Mixer Power Optimization
    Fine-tune mixer power settings to cut energy consumption

    Product Introduction

    SVI-PLUS Activated Sludge Intelligent Diagnostics System is an AI-powered online monitoring solution designed for modern wastewater treatment plants. By continuously analyzing settling curves and key sludge parameters such as SV, SVI, settling velocity, MLSS, and supernatant turbidity, the system delivers real-time process diagnostics and early warning of sludge bulking and operational anomalies.
    Powered by advanced AI agents, SVI-PLUS enables precise return sludge ratio control, optimized coagulant dosing, reduced energy consumption, and improved SBR throughput. It also supports in-situ capacity evaluation of secondary clarifiers, helping plants safely increase loading while maintaining stable performance.

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