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Benefits of intelligent motor control centers

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Motor Control Centers (MCC), based on PROFInet, are getting very popular as they lead to increased productivity, reduced operating costs and integrate manufacturing and business networks with field devices.

The concept of Intelligent Motor Control Centers (i-MCC) is widely accepted in industries today due to their benefits such as better protection along with monitoring and diagnostic features from the motor management relay. Currently, the motor management relays are capable of communicating the motor operational, diagnostic and service data to PLC/DCS over serial communication protocols like Profibus, CanOpen, DeviceNet, Modbus, etc. The need of ability of data exchange from the motor management relay is gradually rising, wherein the process industries are looking for more informative data, like on energy, at a faster rate. At the same time, it is also preferred to have common communication network right from the field devices level up to the enterprise level. Keeping-up with the changing customer needs, motor management relays are now available over Ethernet communication protocol like PROFInet, which enables high speed data transfer from i-MCC to DCS/PLC.

PROFInet has become the leading industrial Ethernet protocol in the market compared to other Ethernet based industrial protocols because of features such as determinism, real-time and isochronous real-time data transfer. More than five million PROFInet based devices were installed by the end of 2012 and this number is expected to grow with a CAGR of more than 8.7 per cent in this year.

Challenges with the serial communication bus

Master – slave communication: The serial communication bus is based on the master slave type of communication system, where a single master can only collect the data from the defined slaves. Therefore, the electrical operator is dependent on PLC/DCS to acquire motor information like faults, operating hours etc.

Data exchange: Another major limitation of the serial communication bus is in terms of the number of data bytes exchanged, which directly affects the speed and performance of the network. Exchange of a high number of data bytes from the field devices over the communication bus lowers the speed of communication and affects the performance of the automation system.

Maintenance: It is quite difficult to maintain the serial bus owing to the additional network components like repeaters, line terminator and dedicated communication cable.

Scalability: In case there is a need to expand i-MCC system based on serial bus, additional intermediate gateways like Modbus to Ethernet, bus specific cables, repeaters and other additional communication masters for communication will be required. This makes the expansion costlier with increased network complexity.

Availability: All the motor feeders inside a MCC are connected as a daisy chain (loop in and loop out). Hence, in the event of breakage of communication cable bus, the entire MCC network gets disconnected from the main PLC/DCS. Relays like SIMOCODE pro, within which logics related to motor interlocks can be written, will enable the process to continue with all field interlocks working, even after communication has failed between the relay and PLC/DCS.

Advantages of PROFInet based system

A system based on PROFInet provides better bandwidth for high speed data transfer, open connectivity and helps in standardisation of the entire plant network.

OPC UA: OPC Unified Architecture (UA) is the next generation technology from the OPC foundation for safe and reliable data transfer and defines access to industrial communication networks on Ethernet. By using a common HMI as an OPC UA client inside MCC, it is possible to control and monitor a group of intelligent feeders independent of the PLC/DCS.

Web server: Integrated web server function with motor management relay over PROFInet permits access to the motor details online, as well as control of the feeder with the required levels of user authentication using just a basic internet browser.

Cyclic send-and-receive: PROFInet, having higher bandwidth, allows high number of data exchange between motor management relays and IO controller (PLC/DCS) with good performance of the network. Selectable cyclic send/receive data allows transmission of motor status and command in real time to PLC/DCS. PROFIenergy: PROFIenergy is a profile of the real-time Industrial Ethernet protocol-PROFInet. PROFIenergy enables the deployment of more effective energy management strategies over PROFInet architectures. Its function is to place energy consuming motor feeder into æsleepÆ modes during idle times (non-productive periods). This prevents the wastage of energy. PROFIenergy also provides energy data like active power, reactive power, current, voltage, power factor to the Energy Management System (EMS) over PROFInet.

Ring architecture: Motor management relay over PROFInet has an integrated dual Ethernet switch port that forms a ring network. The ring system supported by Media Redundancy Protocol(MRP) doesn’t affect the functioning of the network in the event of any single point bus failure. Hence it ensures high availability of MCC for the critical processes.

PROFIsafe: PROFIsafe protocol is the special safety signal over PROFInet which allows safe disconnection of the motor feeder in case of a hazardous situation. Such a system of motor management relay with necessary safety standards can be used in system categorised for SIL1/2/3.

Other benefits of PROFInet based motor management relays is time synchronisation with the main clock over Network Time Protocol(NTP). This helps in accurate analysis of the events in case of any faulty condition.

Conclusion

Systems based on PROFInet are becoming very popular as they lead to increased productivity, reduced operating costs and integrate manufacturing and business networks with field devices. Intelligent motor control centers based on PROFInet are easy to maintain and do not require communication accessories like repeater, line terminator and special connectors etc. Given the rapid growth and acceptability of Ethernet devices, the cost of the Ethernet network components is slated to reduce further in coming times. To conclude, i-MCC based on PROFInet has high availability because of the ring architecture and high transparency attributed to multiple access points like web server and OPC UA. Further its determinism allows it to integrate the field devices in a process industry up to the supervisory/SCADA level.

Exchange of a high number of data bytes from the field devices over the communication bus lowers the speed of communication and affects the performance of the automation system.

Bibliography:

1. SIMOCODE user manual: www.siemens.com/industrial-controls/catalogs

2. PROFINET Technology the easy way to PROFINET: www.profibus.com/technology/profinet/

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Concrete

We consistently push the boundaries of technology

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Swapnil Jadhav, Director, SIDSA Environmental, discusses transforming waste into valuable resources through cutting-edge technology and innovative process solutions.

SIDSA Environmental brings decades of experience and expertise to the important niche of waste treatment and process technologies. As a global leader that is at the forefront of sustainable waste management, the company excels in recycling, waste-to-energy solutions and alternative fuel production. In this conversation, Swapnil Jadhav, Director, SIDSA Environmental, shares insights into their advanced shredding technology, its role in RDF production for the cement industry and emerging trends in waste-to-energy solutions.

Can you give us an overview of SIDSA Environmental’s role in waste treatment and process technologies?
SIDSA is a leading innovator in the field of waste treatment and process technologies, dedicated to delivering sustainable solutions that address the growing challenges of waste management.
SIDSA is a more than 52-year-old organisation with worldwide presence and has successfully realised over 1100 projects.
Our expertise is in the engineering and development of cutting-edge systems that enable the conversion of waste materials into valuable resources. This includes recycling technologies, waste-to-energy (W2E) systems, and advanced methods for producing alternative fuels such as refuse derived fuel (RDF). The organisation prioritises environmental stewardship by integrating energy-efficient processes and technologies, supporting industrial sectors—including the cement industry—in reducing their carbon footprint. Through our comprehensive approach, we aim to promote a circular economy where waste is no longer a burden but a resource to be harnessed.

How does SIDSA Environmental’s shredding technology contribute to the cement industry, especially in the production of RDF?
SIDSA’s shredding technology is pivotal in transforming diverse waste streams into high-quality RDF. Cement kilns require fuel with specific calorific values and uniform composition to ensure efficient combustion and operational stability, and this is where our shredding systems excel. In India, we are segment leaders with more than 30 projects including over 50 equipment of varied capacity successfully realised. Some of the solutions were supplied as complete turnkey plants for high capacity AFR processing. Our esteemed client list comprises reputed cement manufacturers and chemical industries. Our technology processes various types of waste—such as plastics, textiles and industrial residues—breaking them down into consistent particles suitable for energy recovery.

Key features include:

  • High efficiency: Ensures optimal throughput for large volumes of waste.
  • Adaptability: Handles mixed and heterogeneous waste streams, including contaminated or complex materials.
  • Reliability: Reduces the likelihood of operational disruptions in RDF production. By standardising RDF properties, our shredding technology enables cement plants to achieve greater energy efficiency while adhering to environmental regulations.

What are the key benefits of using alternative fuels like RDF in cement kilns?
The adoption of RDF and other alternative fuels offers significant advantages across environmental, economic and social dimensions:

  • Environmental benefits: Cement kilns using RDF emit fewer greenhouse gases compared to those reliant on fossil fuels like coal or petroleum coke. RDF also helps mitigate the issue of overflowing landfills by diverting waste toward energy recovery.
  • Economic savings: Alternative fuels are often more cost-effective than traditional energy sources, allowing cement plants to reduce operational expenses.
  • Sustainability and resource efficiency: RDF facilitates the circular economy by repurposing waste materials into energy, conserving finite natural resources.
  • Operational flexibility: Cement kilns designed to use RDF can seamlessly switch between different fuel types, enhancing adaptability to market conditions.

What innovations have been introduced in waste-to-energy (W2E) and recycling solutions?
SIDSA’s machinery is meticulously engineered to handle the complex requirements of processing hazardous and bulky waste.

This includes:

  • Robust construction: Our equipment is designed to manage heavy loads and challenging waste streams, such as industrial debris, tires and large furniture.
  • Advanced safety features: Intelligent sensors and automated controls ensure safe operation when dealing with potentially harmful materials, such as chemical waste.
  • Compliance with standards: Machinery is built to adhere to international environmental and safety regulations, guaranteeing reliability under stringent conditions.
  • Modular design: Allows for customisation and scalability to meet the unique needs of various waste management facilities.

How does your organisation customised solutions help cement plants improve sustainability and efficiency?
We consistently push the boundaries of technology to enhance waste management outcomes.
General innovations and new product development focus on:

  • Energy-efficient shredders: These machines consume less power while maintaining high throughput, contributing to lower operational costs.
  • AI-powered sorting systems: Utilise advanced algorithms to automate waste classification, increasing material recovery rates and minimising errors.
  • Advanced gasification technologies: Convert waste into syngas (a clean energy source) while minimising emissions and residue.
  • Closed-loop recycling solutions: Enable the extraction and repurposing of materials from waste streams, maximising resource use while reducing environmental impact.

What future trends do you foresee in waste management and alternative fuel usage in the cement sector?
Looking ahead, several trends are likely to shape the future of waste management and alternative fuels in the cement industry:

  • AI integration: AI-driven technologies will enhance waste sorting and optimise RDF production, enabling greater efficiency.
  • Bio-based fuels: Increased use of biofuels derived from organic waste as a renewable and low-carbon energy source.
  • Collaborative approaches: Strengthened partnerships between governments, private industries and technology providers will facilitate large-scale implementation of sustainable practices.
  • Circular economy expansion: The cement sector will increasingly adopt closed-loop systems, reducing waste and maximising resource reuse.
  • Regulatory evolution: More stringent environmental laws and incentives for using alternative fuels will accelerate the transition toward sustainable energy solutions.

(Communication by the management of the company)

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Concrete

FORNNAX Technology lays foundation for a 23-acre facility in Gujarat

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FORNNAX Technology, a leading manufacturer of recycling equipment in India, has marked a major milestone with the Groundbreaking (Bhoomi Pujan) ceremony for its expansive 23-acre manufacturing facility in Gujarat. Specialising in high-capacity shredders and granulators, FORNNAX is strategically positioning itself as a global leader in the recycling industry. The new plant aims to produce 250 machinery units annually by 2030, making it one of the largest manufacturing facilities in the world.
The foundation stone for this ambitious project was laid by Jignesh Kundaria, CEO and Director, alongside Kaushik Kundaria, Director. The ceremony was attended by key leadership members and company staff, signifying a new chapter for FORNNAX as it meets the growing demand for reliable recycling solutions. Speaking on the occasion, Jignesh Kundaria stated, “This marks a historic moment for the recycling sector. Our high-quality equipment will address various waste categories, including tyre, municipal solid waste (msw), cables, e-waste, aluminium, and ferrous metals. this facility will strengthen our global presence while contributing to India’s Net Zero emissions goal by 2070.”
FORNNAX is actively expanding its footprint in critical markets such as Australia, Europe and the GCC, forging stronger sales and service partnerships. The facility will house an advanced Production Department to ensure seamless manufacturing.

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Concrete

Decarbonisation is a focus for our R&D effort

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Dyanesh Wanjale, Managing Director, Gebr. Pfeiffer discusses the need to innovate grinding technologies to make the manufacturing process more efficient and less fuel consuming.

Gebr. Pfeiffer stands at the forefront of grinding technology, delivering energy-efficient and customised solutions for cement manufacturers worldwide. From pioneering vertical roller mills to integrating AI-driven optimisation, the company is committed to enhancing efficiency and sustainability. In this interview, we explore how their cutting-edge technology is shaping the future of cement production.

Can you tell us about the grinding technology your company offers and its role in the cement industry?
We are pioneers in grinding technology, with our company being based in Germany and having a rich history of over 160 years, a milestone we will celebrate in 2024. We are widely recognised as one of the most efficient grinding technology suppliers globally. Our MBR mills are designed with energy efficiency at their core, and for the past five years, we have been focused on continuous improvements in power consumption and reducing the CO2 footprint. Innovation is an ongoing process for us, as we strive to enhance efficiency while supporting the cement industry’s sustainability goals. Our technology plays a critical role in helping manufacturers reduce their environmental impact while improving productivity.

The use of alternative fuels and raw materials (AFR) is an ever-evolving area in cement production. How does your technology adapt to these changes?
Our vertical roller mills are specifically designed to adapt to the use of alternative fuels and raw materials. These mills are energy-efficient, which is a key advantage when working with AFR since alternative fuels often generate less energy. By consuming less power, our technology helps bridge this gap effectively. Our solutions ensure that the use of AFR does not compromise the operational efficiency or productivity of cement plants. This adaptability positions our technology as a vital asset in the industry’s journey toward sustainability.

What are some of the challenges your company faces, both in the Indian and global cement industries?
One of the major challenges we face is the demand for expedited deliveries. While customers often take time to decide on placing orders, once the decision is made, they expect quick deliveries. However, our industry deals with heavy and highly customised machinery that cannot be produced off the shelf. Each piece of equipment is made-to-order based on the client’s unique requirements, which inherently requires time for manufacturing.
Another significant challenge comes from competition with Chinese suppliers. While the Indian cement industry traditionally favoured our technology over Chinese alternatives, a few customers have started exploring Chinese vertical roller mills. This is concerning because our German technology offers unmatched quality and longevity. For example, our mills are designed to last over 30 years, providing a long-term solution for customers. In contrast, Chinese equipment often does not offer the same durability or reliability. Despite the cost pressures, we firmly believe that our technology provides superior value in the long run.

You mentioned that your machinery is made-to-order. Can you elaborate on how you customise equipment to meet the specific requirements of different cement plants?
Absolutely. Every piece of machinery we produce is tailored to the specific needs of the customer. While we have standard mill sizes to cater to different capacity requirements, the components and configurations are customised based on the client’s operational parameters and budget. This process ensures that our solutions deliver optimal performance and cost efficiency. Since these are heavy and expensive items, maintaining an inventory of pre-made equipment is neither practical nor economical. By adopting a made-to-order approach, we ensure that our customers receive machinery that precisely meets their needs.

The cement industry is focusing not only on increasing production but also on decarbonising operations. How does your company contribute to this dual objective, and how do you see this evolving in the future?
Decarbonisation is a key focus for our research and development efforts. We are continuously working on innovative solutions to reduce CO2 emissions and improve overall sustainability. For example, we have significantly reduced water consumption in our processes, which was previously used extensively for stabilisation. Additionally, we are leveraging artificial intelligence to optimise mill operations. AI enables us to monitor the process in real-time, analyse feedback, and make adjustments to achieve optimal results within the given parameters.
Our commitment to innovation ensures that we are not only helping the industry decarbonise but also making operations more efficient. As the cement industry moves toward stricter sustainability goals, we are confident that our technology will play a pivotal role in achieving them.

Can you provide more details about the use of digitalisation and artificial intelligence in your processes? How does this improve your operations and benefit your customers?
Digitalisation and AI are integral to our operations, enabling us to offer advanced monitoring and optimisation solutions. We have developed three distinct models that allow customers to monitor mill performance through their computer systems. Additionally, our technology enables real-time feedback from our German headquarters to the customer. This feedback highlights any inefficiencies, such as when a parameter is outside the optimal range,
and provides actionable recommendations to address them.
By continuously monitoring every parameter in real time, our AI-driven systems ensure that mills operate at peak efficiency. This not only enhances production but also minimises downtime. I am proud to say that our mills have the lowest shutdown rates compared to other manufacturers. This reliability, combined with the insights provided by our digital solutions, ensures that customers achieve consistent and efficient operations. It’s a game-changer for reducing costs and enhancing overall productivity.

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