System Integration & Control Systems Design


Smart production line configuration

October 2021 System Integration & Control Systems Design

In today’s fast-paced environment, manufacturers are under increasing pressure to deliver on time while still being flexible enough to handle unexpected changes. They need to operate within shorter lead times and satisfy greater and increasing customer demands. To achieve this, they require the capability to schedule production smarter and more dynamically, while hoping for as little downtime as possible. In addition, they need the ability to monitor what is happening on the production floor in real-time to enable real-time decisions.

Although ‘better scheduling’ might sound like a simple answer, the reality is that this exercise of knowing which order to place on what line and in which sequence is mostly performed by singular individuals in the company who, mostly under pressure, base their scheduling on experience and gut feel. Should that person be on leave or off sick, then … well, fingers crossed that it does not happen.

Optimising discrete manufacturing

In the discrete manufacturing environment, a tool change or the reconfiguration of a production line is a major cause of production loss. Planners continuously try to compensate for this, however, in most cases, it is not the only constraint they need to consider. Although changing tools or the configuration of a production line is a necessary exercise, it can easily take hours, if not days, to ensure that the machine or line is ready to run the next order. Unfortunately, time spent on tool change or line configuration is not something that can be eliminated. However, it is possible to optimise and reduce the time it takes. Many companies use a combination of SMED (single minute exchange of dies) principles in combination with a scheduling solution to achieve this optimisation. Modern scheduling tools go a long way to assist production personnel achieve less downtime, more throughput and happier customers.

A practical example

Let us look at the example of manufacturing items of different colours on the same line or machine. A large part of the tool change exercise is to ensure that the equipment is clean and fit for use for the next product. If you are manufacturing a black item and the next order requires a light one, then a full machine cleaning, possibly combined with a complete die change-out will be required, or otherwise, many items may have to be discarded, as the black colour will take significant time to work itself out of the machine. If, however, another order lower down in the queue is for dark blue items, it may be a viable option to move this order up in the queue as it will require less cleaning as the black pigment will only shade the blue a little darker for the first number of units produced.

Other examples include the bottling of soft drinks, where orders for lighter colour drinks can be scheduled first followed by gradually darker shade colours, which reduces the time spent on CIP (cleaning in progress) and utility usage. When cutting large coils of material, the number of knives that need to be changed between orders can be drastically reduced if orders of similar or gradually changing sizes are scheduled together. Where production lines for fast-moving, short-cycle orders consist of mostly manual labour, it may be possible to schedule products requiring the same number of people on the same line, reducing under-or-over resourcing of production lines.

The above sounds simple and logical, however most companies have multiple lines and machines operating simultaneously, processing a large amount of frequently changing orders and priorities continuously. In this scenario, the alternative and possible sequences can quickly become overwhelming, if not impossible, for one person to comprehend, correlate and re-schedule – no matter how smart the Excel spreadsheet is.

Scheduling algorithms

Modern scheduling software tools have been specifically developed to meet this need for small, medium and large enterprises. By using advanced algorithms that balance demand and capacity to generate achievable production schedules, modern scheduling software provides an interactive, multi-constraint scheduling system. The availability of human resources, equipment capacity, tooling and materials availability, as well as product variables such as colour, thickness and line configuration, for instance, are all considered in scheduling rules. Orders can be scheduled quickly by using intelligent built-in business rules and the planner can also manually interact with the schedule to make changes based on their experience, changing priorities, or unexpected supply constraints.

By defining specific schedule optimisation rules, the planner will be able to dynamically calculate the preferred or optimal sequence to minimise changeover or line configuration times. Such scheduling systems can be customised and configured as needed and can be used as a standalone system or integrated with enterprise and production software, such as MES and ERP systems.

Companies that implemented dedicated production scheduling software realised benefits such as:

• The optimisation of production operations.

• Significant reduction of non-value-added activities such as setup and tooling time.

• Reduction of late deliveries due to manufacturing delays.

• Lower production costs due to less costly downtime.

Although production scheduling can be a frightening task, modern purpose-built scheduling software will ensure that you get a good night’s rest – even if the planner decides to sleep in!


Credit(s)



Share this article:
Share via emailShare via LinkedInPrint this page

Further reading:

Turning system integrators into trusted technology partners
Schneider Electric South Africa IT in Manufacturing System Integration & Control Systems Design
Schneider Electric’s Alliance Partner Programme is repositioning system integrators from hardware suppliers into lifecycle-value partners. Oriel Soupen explains the competency framework, certification model and real-world results that are already helping African system integrators win higher-value, longer-term engagements.

Read more...
When digital twins move from concept to critical tool
IT in Manufacturing System Integration & Control Systems Design Maintenance, Test & Measurement, Calibration
Digital twins are moving out of the lab and onto the mine, the factory floor and the transport network where they predict failures before they happen. Amritesh Anand looks at where they earn their keep, the data and integration work behind them, and the security questions every organisation should ask before switching one on.

Read more...
Best practices for managing the MRO supply chain in Africa
RS South Africa System Integration & Control Systems Design
RS South Africa outlines how strong data governance and digital tools can turn maintenance, repair and operations procurement into a strategic advantage across Africa.

Read more...
Containerised Solar Solution Accelerates Delivery of Riverside 3 MW Power Plant
Proconics System Integration & Control Systems Design
Proconics was engaged by NewFields to deliver the electrical integration solution for the Riverside 3 MW Solar Power Plant in Zimbabwe. The project required a compact, modular approach that could simplify deployment, minimise site works, and support rapid commissioning in a remote location.

Read more...
Modern Energy Metering Solution Enhances Reliability and Reporting for Major Power Utility
SAM Systems Automation & Management System Integration & Control Systems Design
This project involved the implementation of a modern energy metering system for a major power utility operating within the industrial automation and energy management sector. The objective was to improve the reliability, accessibility, and accuracy of energy data while simplifying infrastructure and reducing system complexity.

Read more...
Iritron Achieves Level 1 B-BBEE Status
Iritron News
Iritron has achieved Level 1 B-BBEE Contributor status, up from Level 2 previously. This prestigious verification underscores Iritron’s unwavering commitment to transformation, inclusivity and sustainable empowerment in South Africa.

Read more...
PCS Global
PCS Global System Integration & Control Systems Design
PCS Global led a digital infrastructure initiative in a southern African data centre setting, aiming to merge several essential operational systems into one cohesive platform. The objective was to break down silos, enable real-time decisions, and ensure seamless operation in a mission-critical environment.

Read more...
Seamless migration from ET 200M to ET 200SP HA for future-ready automation
Moore Process Controls System Integration & Control Systems Design
Moore Process Controls undertook a modernisation initiative spanning the mining, petrochemical, and oil & gas sectors. This project involved upgrading legacy Siemens ET200M I/O systems to the advanced ET200SP HA platform.

Read more...
Proconics Modernises Refinery Tank Automation with Compliance-Focused, Brownfield Upgrades
Proconics System Integration & Control Systems Design
Project & Industry Proconics was engaged to modernise automation and SCADA systems across a refinery tank farm. The project involved complex brownfield integration, aligning new automation with existing ...

Read more...
Project & Industry
System Integration & Control Systems Design
Project: Upgrading essential automation and SCADA systems at a coal mine.    Outcome: A modern, stable automation and SCADA environment with reduced technical debt and easier support, ready for expansion. ...

Read more...









While every effort has been made to ensure the accuracy of the information contained herein, the publisher and its agents cannot be held responsible for any errors contained, or any loss incurred as a result. Articles published do not necessarily reflect the views of the publishers. The editor reserves the right to alter or cut copy. Articles submitted are deemed to have been cleared for publication. Advertisements and company contact details are published as provided by the advertiser. Technews Publishing (Pty) Ltd cannot be held responsible for the accuracy or veracity of supplied material.




© Technews Publishing (Pty) Ltd | All Rights Reserved