Fully Automated Autosampling Control System
Industry
Biotech / Life Sciences / Industrial Automation
Scope
Closed-Loop Control / Autosampling Integration / MTP Standard / Process Analytics (PAT) / OT Architecture
Timeframe
12+ Months
-
100%
automated execution of the sampling sequence
-
0
Manual data entry required for sampling results
01
CLIENT
A Global Life Sciences innovator working on a next-generation bioprocessing platform. Their goal is to eliminate manual interventions in drug production by creating a self-driving system where critical quality attributes (CQA) are measured and controlled automatically in real-time.
02
BUSINESS NEEDS
The "Holy Grail" of modern bioprocessing is continuous, automated monitoring. The Client had a robust bioprocess controller and high-end analytical instruments, but they operated as separate silos. The missing link was the "Control Loop": manual bottlenecks, disconnected data, and integration barriers with third-party analytical devices.
03
CHALLENGE
To help our client achieve its goals, we overcome the following challenges:
-
The "Black Box" Problem
Integrating a closed third-party analytical unit that wasn't designed for external automated control. -
Orchestration Logic
Creating a failsafe sequence: Trigger Sampling -> Transport Fluid -> Analyze -> Write Data Back with millisecond precision. -
Standardization (MTP)
Ensuring future analyzers could be plugged in without rewriting code by using Module Type Package standards. -
Data Correlation
Merging high-frequency sensor data with low-frequency analytical data into one coherent dashboard.
04
SOLUTION
We engineered the Digital Handshake that bridged the gap between the bioreactor and the analytical lab. We built a fully automated Autosampling Control Loop. The solution entailed:
- Interface Engineering (The Translator) Reverse engineering of the device's API and development of a custom Middleware Driver to translate proprietary signals into industrial protocols.
- The Logic Engine (The Brain) Implementation of the Sampling Orchestration Logic and error-handling routines like "Sample Line Clogged" detection.
- Unified Visualization (The Eyes) Deployment of a Grafana-based PAT Dashboard, allowing operators to see analytical results plotted instantly alongside process parameters.
- Operational Stabilization Validated the loop through rigorous testing ("Runs Support") to ensure reliability over multi-week continuous processes.
We turned a disconnected lab bench into a cohesive organism. By closing the control loop between the bioreactor and the autosampler, we didn't just save time - we unlocked the potential for real-time feedback control. The system now 'knows' the state of the culture instantly, without a human ever touching a pipette.
Jacek Fischbach
Delivery Executive
Technology used
05
OUTCOME
The project resulted in a robust, scalable system that achieved a fully functional automated cycle of sampling, analysis, and data ingestion. By eliminating manual data entry, the solution ensured total data integrity and process transparency, while the MTP-compliant architecture provided a vendor-agnostic foundation for future scalability.
- Automated Feedback Loop Achieved a fully functional automated cycle: Sample -> Analyze -> Data Ingest.
- Data Integrity Eliminated manual data entry errors. Results are automatically logged and timestamped in the central historian.
- Vendor-Agnostic Design The architecture is ready to accept different analytical devices in the future without major re-engineering.
- Process Transparency Provided 100% visibility into the sampling status and analytical results via unified dashboards.
06
IMPLEMENTED SOLUTION
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Mock-up Testing
Developing "Virtual Analyzers" to stress-test the control logic safely before connecting physical hardware. -
Alarm Management
Configured specific alarms for the autosampling subsystem (e.g., "Reagent Low") to alert operators via the dashboard. -
Zero Manual Entry
100% automated execution of the sampling sequence and real-time availability of CQA data. -
MTP Compliance
Implementation of Module Type Package standards for modular, interoperable lab automation.
-
100%
automated execution of the sampling sequence
-
0
Manual data entry required for sampling results
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