Condition monitoring inside the control system · API 670 where required · OEM-independent instrumentation

Machine Monitoring That Lives Inside the Control System, Not Beside It

Most plants monitor their critical machines twice: once in a protection system that can trip them and once in a condition monitoring package nobody opens between outages. Innova Technologies brings machine condition into the same control platform that runs the machine, so the data that predicts a failure and the logic that prevents it are looking at the same numbers.
Rotating machine shaft in a bearing housing

Control

A monitoring system that only speaks when it trips the machine has told you nothing you could have used.

Machinery protection and machinery monitoring are different jobs that often get bought as one box. Protection has to be fast, simple, and independent: shaft vibration exceeds a limit, the machine trips. Monitoring has to be patient and contextual: this bearing has drifted two microns a month for a year, and the trend steepened after the last outage. A system engineered for the first job does the second one badly, which is why so many condition monitoring packages are consulted only after something has already failed.

 

Innova Technologies keeps protection independent while bringing monitoring into the control system. Vibration, temperature, speed, position, and process measurements are acquired into one data model alongside load, fuel, flow, and valve position, so machine condition can be evaluated against what the machine was actually being asked to do. Alarm and trip integration from the vibration monitoring system is engineered into the control logic. Diagnostics, trends, and health data go to the same HMI and historian as everything else rather than to a separate island with its own screen and its own login.

Industrial bearing assembly on rotating machinery

The Problem

Condition data that lives on its own island gets used once a year.

The standalone monitoring package is a familiar plant fixture. It was specified with the machine, it sits in its own cabinet with its own proprietary software, and it holds genuinely valuable data. It is also on a separate network, licensed to a handful of seats, and displays vibration without displaying the load, inlet condition, or fuel that would explain it. So the data is technically available and practically unused, and the first real conversation about it happens after a trip, working backwards.

 

The second problem is that context is what makes condition data actionable. Rising bearing temperature means one thing at steady base load and something entirely different during a fast ramp on a hot day. Vibration amplitude that would be alarming at rated speed may be unremarkable passing through a critical on run-up. When machine measurements and process measurements live in different systems with different timestamps, nobody can make those distinctions quickly, so thresholds get set conservatively, and conservative thresholds generate nuisance alarms that get ignored.

 

Bringing monitoring into the control platform solves both, and it does so without compromising protection. The protective function stays where it belongs, independent and, where the application requires it, engineered to API 670. What changes is that its data, and everything around it, becomes visible in the system the operators actually use. Innova Technologies delivers this OEM-independent, on commercially available hardware with documented IEC 61131-3 logic, so the plant is not adding another proprietary island while trying to remove one.

Capabilities

Machine monitoring capabilities

Click any capability to expand the full technical detail.

Vibration Monitoring System Integration

Alarm, trip, and health outputs from the vibration monitoring system are brought into the control logic so machine protection and machine control act on a shared understanding of condition. Where the application requires it, the protective function is engineered to API 670, with radial and axial vibration, shaft position, and thrust handled through dedicated protection hardware independent of the control system.

Performance Degradation Tracking

Real-time performance calculation locates the machine against its design or commissioning baseline: compressor polytropic head and efficiency with distance to surge, turbine heat rate and exhaust temperature spread, pump head and efficiency. Degradation trends are what turn condition data into an outage plan, and they require process measurements that a standalone vibration package does not have.

Bearing, Lube Oil, and Thermal Condition

Bearing metal and drain temperatures, lube and seal oil pressure, temperature, filter differential, and reservoir level are monitored as a coordinated set rather than as isolated trips. Rate-of-change alarming catches developing problems that fixed thresholds miss, and lube system condition is evaluated against machine state so a cold start does not generate the same alarm as a running degradation.

Exhaust Temperature Spread and Combustion Health

For gas turbines, individual thermocouple monitoring with spread calculation and pattern analysis identifies combustion and hot gas path problems well before an average exhaust temperature limit would react. Failed and drifting thermocouples are detected and excluded rather than being allowed to distort the average.

Speed, Position, and Overspeed Interface

Speed measurement, shaft position, differential expansion, and eccentricity are monitored continuously, with independent overspeed protection kept separate from the governing and monitoring functions on dedicated hardware. Critical speed passage is tracked so that run-up and coast-down behavior can be compared against the machine's own history.

Instrumentation Supply and OEM-Independent Selection

Sensors, transmitters, proximity probes, drivers, and monitoring hardware are specified and supplied as part of the scope, selected on suitability rather than on a supplier relationship. Where a plant standard exists, we work to it. Where one does not, we recommend against the application rather than defaulting to a single catalog.

Diagnostics, Alarm Management, and First-Out

Instrument and hardware health, signal validity, and channel diagnostics are monitored continuously so a failed sensor is identified as a failed sensor rather than acted on as a process event. Alarm rationalization, priority assignment, and first-out capture on trips are engineered in rather than left at defaults, which is the difference between an alarm system operators trust and one they silence.

One Data System and One HMI

Machine condition, process measurement, alarms, events, and trends are presented through a single operator interface and written to a single historian, with data exposed to plant asset management and reliability systems through standard interfaces. One timestamp, one data model, one place to look during an event.

Why Innova Technologies

Monitoring specified by people who have to live with the trip logic

Innova Technologies, formerly Petrotech, brings 50+ years of turbomachinery control experience across gas turbines, steam turbines, hydro turbines, compressors, generators, and reciprocating engines. The distinction that matters on a monitoring project is that we are not a monitoring vendor selling instrumentation into someone else’s control system. We write the control and protection logic, which means we have to defend every threshold we set and every alarm we generate.
Protection stays independent
Bringing monitoring into the control platform does not mean collapsing protection into it. Protective functions remain on independent hardware with hardwired trip paths, engineered to API 670 where the application requires, so a control system fault cannot compromise machine protection. Integration is about data and alarm coordination, not about consolidating the safety function.
OEM-independent instrument and platform selection
Instruments and monitoring hardware are selected on fit, not on a single-supplier arrangement. Innova’s approved platform work includes most vibration monitoring hardware that is selected based on duty and plant standards.
Full-function factory acceptance testing
Monitoring and protection integration is exercised against simulation before it ships: channel faults, sensor failures, voting logic, trip paths, first-out capture, and alarm behavior under realistic transients rather than at steady state. Your reliability and operations personnel run it with us.

Technical Resources

Engineering documentation for machine monitoring

Peer-reviewed white papers and application briefs from real installations.

What Happens During Control System Commissioning?

Control Panel Design for Harsh Industrial Environments

The Future of Turbomachinery Control Systems

FAQ

Frequently asked questions

Are you replacing your vibration monitoring system?
Usually not. In most projects, the existing vibration monitoring system stays, and we integrate its alarm, trip, and health outputs into the control system so its data is visible where operators work and so trip logic and control logic share a view of machine condition. We replace monitoring hardware when it is obsolete, unsupported, or unsuitable for the protective function required, not as a default.
No, because the protective function does not move. Radial and axial vibration, thrust position, overtemperature and overspeed protection stay on independent hardware with hardwired trip paths, engineered to API 670 where the application calls for it. What integrates is data, alarms, and diagnostics. A fault in the control system cannot disable the protection.
Yes. The monitoring and data scope is OEM-independent and does not require us to own the machine’s control system, though we often do, because performance degradation tracking needs process measurements that usually live in the control system rather than in the monitoring package.
Often, though, the mechanism matters. Nuisance trips usually come from thresholds set conservatively because nobody could distinguish a real event from a sensor problem or a normal transient. Channel diagnostics, signal validation, voting logic, and state-dependent thresholds address those causes directly. What integration will not do is make a genuinely marginal machine trip less often, and we will not present it that way.

Vibration Measurement and Protection covers bringing a vibration monitoring system into the controls scope: alarm and trip integration, instrumentation supply, API 670 where required, and one HMI and historian instead of a separate island. Data Logging and Trending covers the record layer, historian, sequence of events capture, and reporting. This page is the wider condition picture, thermal, performance and combustion health, brought into the same control platform as both.

Your machines are already telling you what is wrong. The data should reach someone.

From integrating an existing vibration monitoring system into your control scope to a full condition monitoring and performance tracking scope with instrumentation supply, we engineer to the machines you run.

Featured

Open, documented, maintainable control.

IEC 61131 standardized logic your team can support without OEM lock-in.

Don’t see your industry?

Your machinery application is likely in our scope.

If your equipment runs and your downtime costs more than the controls do, let’s talk

Single-source

One team, drawing to startup.

Engineering, fabrication, installation, and commissioning under one contract.
FORMERLY PETROTECH

A New Name for the Company We've Become.

SAME PEOPLE.
SAME ENGINEERING EXPERTISE.
BROADENED HORIZONS.

A MESSAGE FROM JOHN KAZOUR, CEO

Welcome to Innova Technologies

To our customers and partners,

For more than 50 years, our team has helped customers keep critical operations running. We built our reputation as Petrotech by taking responsibility for control systems on important rotating machinery.

As more industries came to us with similar challenges across power generation, compression, and hydro applications, our engineering team kept finding ways to solve them. Eventually, the business outgrew the Petrotech name.

We are entering our next chapter as Innova Technologies. The new name reflects the full scope of our work as a rotating machinery control systems specialist. We engineer controls around the machine, deliver complete projects from design through commissioning, and provide support that stays with the problem until it is solved.

Our name is changing, but the people, engineering experience, and commitment behind the work continue. Our responsibility to active projects and installed systems carries forward under the Innova Technologies name. Your current contacts remain the right place to start, and we will communicate directly if an administrative record requires an update.

We appreciate the trust you have placed in us over the decades, and we look forward to continuing that work as Innova Technologies.

John Kazour

CEO, Innova Technologies