Tag: Enterprise Asset Management

Should Condition-based Maintenance form part of your maintenance programme?

In this day and age, where technology is a great enabler in helping to predict equipment or plant downtime, one would reckon that most asset-intensive companies have condition monitoring as one of the arrows in their tactical maintenance quiver. With condition-based maintenance in place, you get a better understanding of the condition of your equipment which in turn helps you to do the appropriate maintenance when required. The spinoff to this is increased production, improved safety, reduced maintenance costs and failures, a controlled budget and ultimately – longer-lasting assets.

While there is a definite increase in the number of companies using CM technologies and services, we still encounter businesses either with limited /failed or partially implemented CM programmes, or no plan business strategy related to their reliability or condition monitoring programmes. So why then do engineering managers not include condition monitoring in their maintenance and reliability programmes? We’ve found a lack of knowledge and some misconceptions about condition monitoring being the biggest culprits. In this article Gerrit Visagie, Martec Condition Monitoring Consultant will address the issues at hand.

What is condition-based maintenance (CBM)?

Those activities involving continuous or periodic monitoring and diagnosis in order to forecast component degradations so that as-needed, planned maintenance can be performed before equipment failure.

The purpose of CBM as a tactic is to prevent unacceptable consequences by monitoring asset conditions. CBM is predictive in nature with periodic inspections or condition monitoring being carried out to assess the asset condition. If the condition is unacceptable corrective follow-up maintenance is initiated.

CBM is applied when the deterioration in asset health or performance is detectable, or there is adequate warming time to react (PF interval is large enough, HSSE issues are addressed and it is cost-effective).

We suggest two standard tasks to be included in your enterprise asset management system to do inspections and follow-up’s which can be activated based on inspection findings.

When is condition-based maintenance feasible?

We feel you are doing it right when you get the following results:

  • The potential failure mode can be clearly defined and detected.
  • The period from detection to failure (P-F) is fairly constant and predictable.
  • It is practical to monitor at intervals smaller than the P-F interval.
  • The warning level is detected long enough before failure to allow the intervention.

What are some of the most important value-adds of CBM?

  • You can plan and schedule corrective action in good time, which include your spare parts, materials and special resources.
  • You can conduct appropriate maintenance with the right people and at the right time and place.
  • With selected or target maintenance you become more efficient and reduce downtime.
  • You can eliminate defects that would result in failures.
  • With more control over your budget, you stabilise and then start decreasing maintenance costs.
  • Well maintained assets have an increased lifespan.
  • By mitigating breakdowns on certain critical assets, you reduce the risk of collateral asset damages.
  • Decision making becomes easier with better insights available.

How can we calculate the return on investment when implementing condition monitoring?

This is a very important question as it definitely justifies the investment of implementing condition monitoring, CBM and even something like asset health management.

Here is a simple calculation to determine the return on investment:

  • Estimated cost if the asset run to failure = R735 000
  • The actual cost of PDMR (eg. Parts, consumable materials, contractor support, repair shop cost, etc) = R 143325
  • Cost avoidance for this PDMR = R735 000 – R 143325= R591 825

This is an important cost to consider as part of the overall maintenance budget, especially as input into life cycle costing for specific assets of high value and budgeting purposes.

What are the typical technologies or tactics (approaches) used for mechanical equipment?

  • Technologies that are widely used are the following:
  • Vibration monitoring/ Portable and permanent monitoring systems
  • Ultrasound/ Portable and permanent monitoring systems
  • Motor Current Signature Analysis (MCSA)
  • Oil Monitoring (Tribology)
  • Thermography (IR Imaging)
  • NDT (Non-destructive testing)

What steps should be taken to compile an integrated CBM and asset management plan?

Again, one needs to define the goal and endpoint of what you want to achieve.

The philosophy of asset condition monitoring is to watch carefully, determine health status on a continuous or periodic basis, predict future status based on deficiencies found, then maintain or return asset health to normal before complete loss of function.

From my experience and perspective, I would suggest the following steps:

Step 1 | Identify the assets that you want to monitor. Concentrate on assets that are:

  • Criticality – Importance to production and organisational success
  • Costly to repair and replace
  • Not going to be replaced any time soon
  • Reaching the end of life
  • High Failure rate
  • Long replacement lead time

Step 2 | Identify all known and probable failure modes

  • The best way to do this is by performing an RCM analysis and focus on the failure modes that can be managed using CBM strategies.

Step 3 | Select the right CBM solutions and monitoring techniques

  • A condition monitoring technologies road map can help prioritise what to get and can allow for a gradual uptake to assist in change management when implementing new tactics.
  • Choose the correct CBM technology based on the FMEA/RCM Analysis for the specific assets

Step 4 | Define baseline limits for chosen CBM solutions

  • You need to define acceptable condition limits so that the system can warn you when monitored equipment is starting to deteriorate. These limits have to be set in a way that you have enough time to perform corrective actions.

Step 5 | Establish the CBM program

  • Running any maintenance program requires you to define tasks and responsibilities and assign them to your maintenance team. Collecting and recording measurements should be in the centre of your plan.

Step 6 | Analyse the data and act accordingly

  • Analyse the data coming in from sensors and inspections to plot a trend and schedule maintenance work accordingly.

Who oversees this plan?

Ideally, this would be the responsibility of the reliability engineer, manager or technician. It also depends on the availability of competent persons. I have come across many plants with a condition monitoring technician leading the team.

How do CBM and normal scheduled maintenance fit together?

Both are maintenance tactics and they should form part of the same asset management strategy. The structure of the asset management department will determine how these activities are executed, but in general, the person responsible for CBM, usually a reliability engineer, will identify and report the defects and recommendations to the planning department which will, in turn, instruct the maintenance department to go and do the corrective actions. We have encountered tension between the various departments as CM is sometimes perceived as a ‘policing tool’ as it can highlight the absence of maintenance and imply that the maintenance team did not do their work. Companies must invest in training people to understand the value and place of condition monitoring and how it supports their collective efforts to improve the performance of their equipment.

Historically most plants had their own condition monitoring departments, but as with many other special functions, more and more companies tend to outsource this function to a specialist condition monitoring company. In my view, this service provider should become an extension of the asset management team and work towards the same goals as stated in the strategy.

What are the typical misconceptions about condition monitoring?

  • Condition monitoring is expensive – Equipment can be expensive, but part of the strategy can be to appoint a condition monitoring partner to do the work for you. This reduces the need for upfront equipment costs.
  • Condition monitoring is time consuming and a complex task – With the right equipment and experience you can quickly and effectively set up equipment in the database (or on the datalogger itself) and take multiple data points in a matter of minutes.
  • Specialists must gather and analyse data – With some very basic training, a lowered skilled person can gather the correct information and send it to an adequately skilled person or CM partner to analyse, interpret and advise on what to do.
  • Each and every piece of equipment must immediately be included in the CBM programme – Start with a pilot plant and equipment and gradually include more assets from thereon.

To find out how CM has helped companies, you can visit the Martec resource page to browse through our case studies and client reference stories. You can also read our value-adding TechTalks that unpack the different condition monitoring applications and tactics.

Martec’s safe work practices awarded with a NOSA 5-star rating

What we have always professed is now confirmed. Our work practices are extremely safe. In fact, the NOSA 5-star rating acknowledges our efforts as occupational risk management excellence. And what is really great is that the 5-star rating is now aligned with the ISO 45000 Occupational Health and Safety standard. This means that our practices are higher than usually expected from service providers.

“Our clients can be assured that their plants, equipment and most importantly, staff and clients are in safe hands when we come on-site to perform work. We take all the necessary precautions to ensure safe operating conditions before starting the work and then performing the work safely. If any associated safety events or incidents arise while we work, a further risk assessment is conducted and managed according to our safety protocol, and the incident is reported”, says Naldo Bester, National Projects Manager.

What makes our practices so safe?

Firstly, our people and culture. We have a safety culture and a Goal Zero approach to safety incidents. At home and at work, we endeavour to do things safely.

Secondly, our staff’s competence. We make sure that our teams are suitably trained and competent to do their work and understand the risk associated with the tasks they perform. Using our safety management system, we can track if staff is not adhering to safety standards and address this in their training plans.

Lastly, we have a very involved and stringent safety management system in place. It consists of an incident reporting system, the HSSE app, that integrates with our Enterprise Asset Management system, On Key, where incident data is collected, processed, and used to inform our risk assessment. This, in turn, feeds to our management system, where different levels of control reside. Tasks have been configured in On Key to manage and deliver on our statutory compliance controls and legislative requirements. A further part of our management system is our competency matrix, where we define competency requirements for different roles and responsibilities. These requirements are included in job descriptions and reviewed during six monthly development discussions. Relevant courses are bookmarked in their training plans, and their training status is reported back in the management system.

Our eyes are set on ISO 45000 certification

According to Toni de Klerk, Pragma HSSE Manager, the 5-star rating confirms that our management system and work processes are of a very high occupational health and safety standard. It provides a solid foundation for our plan to achieve ISO 45000 certification.

The Pragma group endeavours to lead the way and become the benchmark for safe work performance in the asset management industry.

Future of substation monitoring: It is not just the software

Brian D. Sparling, Senior Member of IEEE, and Regional Manager with Dynamic Ratings Inc. 

The future of online monitoring of high voltage substation equipment is closely linked to enterprise asset management systems provided that proper measures are implemented for the EAM system to deliver the expected results. Those measures include trained personnel, detailed knowledge of one’s assets, technically and economically feasible maintenance process, the flow of information to personnel, and collaboration with a company that can provide the monitoring system as well as the expertise in its implementation. Monitoring and diagnostics are now part of the business process which contributes to a reduction in forced outages and a more secure and reliable system.

Introduction

I am an avid follower of various LinkedIn groups and have recently read with interest items from two diverse and separate groups, which, on the surface, appeared to have no connection with each other. One was from the Transformer Condition Monitoring group, asking the question “Is there a future for transformer monitoring and why/why not?”. I would refer the questioner to review my article published a year ago in Transformers Magazine for some of the answers.

Another item from the IAM Discussion group highlighted the author’s enterprise asset management predictions for 2018. I did touch on this topic of asset management in my previous article, yet found that this item provided more focus on why many of the systems fail to deliver on what the asset owner thought they had signed up for. In my mind, these two are connected. The future of substation monitoring is closely linked to the latest in buzz words or phrases such as Internet of Things (IoT ) and EAM. Full disclosure: I work for a company that engineers, produces, and provides engineering services to those companies owning and operating HV assets on the power system. We also produce asset analytics for those very same assets monitored.

Terrence O’Hanlon, CEO at Reliabilityweb.com, has noted what his company sees daily, not necessarily with electrical energy companies, but their observations carry over:

  • a reminder that 80 % of the people who care about EAM and read this cannot access their work orders on a mobile device,
  • only 40 % of the organisations they studied have an actionable EAM based asset registry,
  • only 30 % of the organisations they studied have accurate and up to date asset criticality rankings.

Mr. O’Hanlon in his post predicts the following:

  1. Without an engaged and empowered workforce, EAM will still fail to create a positive return on investment.
  2. Without knowing what assets, you have, EAM will still fail to create a positive return on investment.
  3. Without a technically and economically feasible maintenance process (such as CBM), EAM will still fail to create a positive return on investment – no matter how much IoT you implement.
  4. Without adequate and ongoing EAM training, EAM will still fail to create a positive return on investment.
  5. Without active executive sponsorship, EAM will still fail to create a positive return on investment.

I will add another prediction: A failure to communicate – unique to utilities with remote substations, some located in geographically difficult to reach areas, either in terms of distance (hundreds of kilometers away from operational centres), or in times of extreme or even normal weather conditions (winter), which makes getting to the sites at times hazardous. Many who buy and install monitoring systems have not implemented the items necessary to take advantage of the data and information available for an EAM system. This can lead them to failure to create a positive return on investment (ROI).

Communications

Communication is extremely important and is a requirement that must be included in the scope of the plan. Without a means of notifying those who need to know (maintenance, operations, etc.) there is no point to installing a monitor, and just to allow it to be an ‘island of information’. Those who have been successful and have had proven ROI have engineered their ‘systems’ to include the pathway for all this non-operational data/information and alarms through a parallel communication channel, separate from the SCADA (or operational data) path. They may both use the same ‘pipe’ to transport the data, but each is secure from one another. Once back in a secure data historian with supporting applications, including the EAM, access to the information can be provided to maintenance personnel to carry out CBM activities, to operations personnel to have an awareness of the operating status, and to asset management personnel to develop their asset replacement strategies. Examples of this ‘failure to communicate’ include a bushing failing and taking the transformer with it, all due to the failure of the personnel to connect the alarm relays on the monitor to SCADA, RTU or annunciators. The operators had no indication of a failure condition in progress until it was too late.

What to do?

These observations can be used as a benchmark for HV equipment owners to act on. There may be logical and/or regulatory reasons why some of these items cannot become mobile, but technically speaking, there are no large hurdles. It is a process. Defining the problems and issues is the first step that can be answered by these five questions:

Why?
Why do we want to start online monitoring? Define in words why you want to move in this direction. Many of the common reasons are:

  • Reducing the risk of unexpected failures
  • Moving to condition-based maintenance from time-based maintenance
  • Safety for workers and the public
  • Less driving to remote sites, and sending the right team to the site
  • Situational awareness of a unit’s condition before entering near the unit
  • Extending the remaining useful life of units in service
  • Capital deferment, cost savings on buying new equipment

Who?
Who will benefit from such a program? Define who and obtain their support for this move.

Who are the stakeholders:

  • Maintenance groups – early warning of incipient defects
  • Operations groups – situational awareness, how much load can this unit sustain, and for how long?
  • Assessment management – understanding ‘risky’ units, plan for replacement
  • Standards – writing specifications for new units, based on experiences of units in service

What?
What to monitor depends a great deal on the answer to the first question of “Why”. Some examples as identified through Failure Modes and Effects Analysis (FMEA) are:

  • A vintage of bushings or on-load tap-changer (make, type), have over time had an increasing failure rate due to many reasons, aged gaskets, latent design/manufacturing defects.
  • Defective ancillary devices, such as OTI and/or WTIs, have degraded over time and are no longer working/or out of calibration.
  • Older units may be experiencing increased loading over time. The question becomes: can we keep increasing the load safely or is it time to plan a replacement?

Where?
Where to monitor depends a great deal on the answer to the questions of “Why” and “Who”, as well as input from operations load dispatch and asset management.
Some examples include:

  • Critical loads served, government buildings, hospitals, heavy use of industrial loads (continuous processes);
  • Increasing maintenance usually indicates units with either acute or critical deficiencies, and need extra intensive attention, before replacement.
  • Generating facilities, with few or no spares, to replace units that unexpectedly fail. Lack of Generator Step-up (GSU) transformer = no revenue!

Who?
Who is going to be the champion or the ‘owner’ of the team and overall monitoring systems?

  • This is a very important position and one that deserves a full-time commitment, not only to build the system but to have the support of the management to build the resources necessary for it to be a success!
  • Without a passionate owner or champion of the dedicated team, it is doomed to failure.

The answers to these questions often overlook some critical and necessary elements such as training of personnel.

Training of personnel

Learning from others’ experiences, both good and bad, teaches us a lot about this new and modern approach to monitoring fleets of high voltage substation equipment.

Training needs to include not only the technology and its benefits but also training for operators and maintenance personnel on the new systems and the data/information available. There will be new sets of alarms that they have never encountered before, and many may not know how to respond. Developing an updated alarm response procedure is necessary to provide understanding to critical situations. The concept is to present the alarm(s) condition, transfer knowledge about the nature of the alarm, inform the reader what the consequences of ignoring the alarms may be, and provide recommendations to assist in decision making.

Who can help me? This is all rather new to me.

It is very important for the asset owner to work with a company that has demonstrated with other assets owners their capability not only to supply the ‘boxes’ that may be installed on the equipment but also have the expertise to understand the issues that will be unique to each situation (and substation), where this program needs to be implemented.

This company needs to be able to handle, from a project management point of view, all the requirements and inputs from operations, maintenance, asset management, and the IT departments, as well as the communications systems involved. Not all suppliers of the ‘boxes’ and/or EAM systems have that capability, nor domain knowledge of substation assets, to understand the unique applications involved.
In other words, ensuring measurements made on a piece of equipment are translated into actionable information, and delivered in a meaningful way to those who can then act on it, can be obtained by working with a proven supplier of not just a series of boxes and widgets, but one that has demonstrated that they can provide the systems you want, interfaced the way they want, that will seamlessly present the data where you want it.

Monitoring and diagnostics is now part of the business process

Those utilities that have demonstrated that this process provides a tangible benefit to their business understand that this is now becoming a key part of the other business processes any energy company has, such as HR, finance, and operations, to name a few.
It is one of the core competencies of their company that contributes not only to the bottom line, but also to an increased awareness of the worker and public safety, reduction in forced outages, and a more secure and reliable system which enhances customer satisfaction.
The EAM software developed for HV substation assets will deliver the expected benefits, provided the business owners provide the resources, both financial and structural, including a team dedicated to making it work, and has the plan to make it happen.

Bibliography

  1. B. Sparling, Online monitoring of HV substation assets: Myths and truths, Transformers Magazine, Volume 4, Issue 2, April 2017
  2. Terrence O’Hanlon, Top 5 Enterprise Asset Management (EAM) Predictions 2018, https://www.linkedin.com/pulse/top-5-enterprise-asset-managementeam-predictions-2018-ohanlon/ current January 4, 2018

This article was first published on Transformers Magazine Vol. 5 Issues 2

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