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Posidonia 2024 Bids Farewell to Record Number of Participants, Renews Rendezvous for 2026
Posidonia 2024 has already gone down in history as the best-attended in the biennial event’s 55 years of existence, and organisers are already busy receiving enquiries and pre-registration applications
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Applied Technology Review | Monday, June 17, 2024
2,038 exhibitors from 81 countries present at biggest ever Posidonia
Posidonia 2024 has already gone down in history as the best-attended in the biennial event’s 55 years of existence, and organisers are already busy receiving enquiries and pre-registration applications for the next event, scheduled for 1-5 June 2026.
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Having broken all previous records in terms of exhibition space, number of exhibitors and visitors, Posidonia 2024 was also the place where the maritime world came together once again to finalise and confirm highly lucrative new business deals or announce previously signed contracts. One such occasion was the showstopper announcement of Navig8’s tanker fleet and pool business being taken over by ADNOC L&S in a reported $1.5bn deal that was made public during Posidonia 2024.
Theodore Vokos, Managing Director of Posidonia Exhibitions S.A., said: “It is humbling to witness such a strong response to Posidonia 2024 by the global shipping and maritime community. Every sector of the marine economy and all shipping associations gathered once again in high volumes and high spirits to showcase innovations, network, do business, discuss, and debate the future of the industry. From shipyards to shipowners, ship registries to ship chandlers, classification societies, propulsion system manufacturers, energy providers, software developers, trading, brokerage, legal, consultancy, and financing firms, everyone was here again for two weeks to work and play in true Posidonia fashion.”
Exhibitor comments came flooding in soon after the gates at the Athens Metropolitan Expo closed behind the last remaining participants of Posidonia 2024. A total of 32,527 visitors from 130 countries and territories attended the event, an increase of 12% compared to Posidonia 2022. Many of them were full of praise for the organisation of the event, the quality of visitors, and the networking and knowledge-sharing opportunities it offered.
A total of 81 countries and territories from around the world exhibited with the majority coming from Europe and Asia, but this time there was also an increased participation from the Americas.
Alessandro Segabinazzi, Head of Commercial Sector, Embassy of Brazil in Athens said: “Brazil was represented at Posidonia 2024 by the Brazilian Association of Ship Suppliers and Services (ABFN) with 16 of its 33 members participating in the fair. Posidonia allowed ABFN-associated companies to exhibit their expertise to a highly qualified international audience, broadening business prospects, fostering new partnerships, and solidifying commercial ties with strategic global entities. Moreover, it enabled Brazilian participants to stay updated on the latest industry trends, innovations, and challenges, crucial for maintaining competitiveness in this dynamic sector. Events like Posidonia play a pivotal role in fostering international collaboration, knowledge exchange, and the formation of enduring partnerships that drive the industry's growth and innovation.”
Nineteen thousand kilometres away from Brazil, the Micronesian archipelago of Palau was also present in Posidonia 2024. Panos Kirnidis, CEO of Palau International Ship Registry, said: “Our participation in Posidonia offers a significant opportunity for us to engage with ship owners, managers, operators, and other stakeholders in the maritime sector. Face-to-face interactions remain unparalleled, allowing us to demonstrate our understanding of the paramount importance of addressing today's challenges for the maritime sector. In 2024, we re-emphasised our commitment to connecting with ship owners actively seeking easy-to-use, efficient, and customer satisfaction-focused seafaring and ship registration services from PISR.”
Other exhibitors from Europe, the UK and Greece were similarly full of praise for Posidonia 2024.
Georgios Hatzimanolis, Head of Communications, Brand & Events at Kpler, said: "Posidonia 2024 was a resounding success for Greece and the Greek shipping industry, as echoed by many attendees. For the Kpler team, it was a highly positive experience as we showcased our leading platforms, Kpler and MarineTraffic. The high traffic to our booth and the event's overall vibrant atmosphere were remarkable. Kudos to the event organisers for their outstanding efforts."
Nick Brown, Corporate Affairs Director, Marine & Offshore at Bureau Veritas, said: “Posidonia 2024 was a great show and an amazing week. We had so many opportunities to discuss the future of ship safety, performance, and the importance of supply and value chains. The future of shipping is about more than ships! And as always, there were so many good events – and too little time. Congratulations and many thanks to Theodore Vokos and his team - they were simply everywhere. Time now to start thinking ahead to Posidonia 2026.”
Elias J. Makris, Director EU Business Development at Weathernews, said: "After 13 Posidonia that I have attended, that was the most beneficial and successful one. It was greatly organised, and I hope that Posidonia 2026 will be even better".
Eleni Anagnostopoulou, Deputy Director, Global Maritime Consultants Group, said: “The networking opportunities at Posidonia were invaluable. The diverse range of exhibitors and attendees provided a comprehensive view of the maritime industry's current and future landscape, equipping us with the knowledge to make informed decisions and maintain our leadership position. Engaging with this group of professionals allowed us to exchange ideas and best practices, which are essential for driving innovation and excellence in our services. By listening to various industry players' experiences and perspectives, we can tailor our solutions to address the most pressing challenges and opportunities in the maritime sector. Posidonia allows us all to come together to push the maritime industry forward.”
Posidonia 2024 was organised under the auspices of the Ministry of Maritime Affairs & Insular Policy, the Hellenic Chamber of Shipping and the Union of Greek Shipowners and with the support of the Municipality of Piraeus and the Greek Shipping Co-operation Committee.
FREMONT CA: With the introduction of next-generation control testing automation, which changes conventional procedures and improves operational efficiency, the industrial sector is going through a major transition. Manufacturers may ensure that products satisfy strict quality requirements while minimizing human mistake by automating testing methods through the integration of new technologies like artificial intelligence, machine learning, and the Internet of Things. This change speeds up production schedules and allows for real-time data monitoring and analysis, which offers insightful information about manufacturing procedures. This change opens the door to a more intelligent and resilient manufacturing environment that can adjust to changing consumer needs and technical breakthroughs.
Controls Testing and Automation Implementation in Manufacturing
Implementing controls testing and automation in manufacturing involves leveraging advanced technological solutions tailored to specific processes. This strategic approach aims to enhance operational efficiency, reduce human error, and ensure compliance with industry standards. Various methodologies are utilised to streamline these processes, enabling manufacturers to maintain high-quality standards and effective risk management.
Programming and Scripting
Programming and scripting are crucial in developing and automating control testing across diverse manufacturing setups. By employing these techniques, organisations can create automated processes that minimise manual intervention, increasing accuracy and efficiency. These scripts can be customised to fit specific operational needs, ensuring that control testing aligns with the unique requirements of each manufacturing environment.
Third-Party Governance, Risk, and Compliance (GRC) Applications
The adoption of third-party GRC applications has rapidly gained traction within the manufacturing sector. These applications are instrumental in managing access and control while automating processes related to Information Technology General Controls (ITGC) testing. By integrating GRC solutions, manufacturers can enhance their compliance posture and streamline the monitoring of controls, ultimately facilitating a more risk management framework.
Robotic Process Automation (RPA) and Digital Worker Development
Though less common, RPA and digital worker (bot) development offer significant potential for automating control testing in manufacturing. RPA solutions can automate repetitive tasks, improving testing procedures' efficiency and accuracy. Additionally, these automated systems provide valuable reporting and dashboard capabilities that facilitate periodic reviews, helping organisations maintain oversight and control over their manufacturing processes.
Custom Tool Development
Sometimes, organisations opt for custom tool development to meet unique requirements, mainly when dealing with bespoke enterprise resource planning (ERP) applications. Manufacturers can address specific challenges that off-the-shelf tools may need to adequately resolve by creating tailored solutions. This customisation ensures control testing and automation processes align with the organisation's operational needs and strategic goals.
Combining Techniques for Enhanced Automation
Manufacturers often employ these methodologies to achieve adequate control testing and automation. For instance, integrating RPA with third-party GRC applications can significantly enhance the automation of repetitive tasks while enabling unified reporting and control assessments. This holistic approach allows organisations to optimise their control testing processes, ensuring they are efficient and compliant with regulatory requirements.
Implementing automation control testing is essential for organisations that operate in highly regulated environments and demand rigorous quality and compliance standards. As companies seek to enhance internal controls and audits, automation control testing becomes critical to their operational strategy. ...Read more
Sensor production has matured considerably due to material innovations, miniaturization, and digital integration. Environmental changes are sensed with ultra-sensitive sensors made possible using graphene and piezoelectric materials. In contrast, piezoelectric materials make efficient pressure and motion sensors possible in automotive airbags, healthcare devices, and robotics.
Miniaturization is another key trend in sensor manufacturing. The demand for smaller, more compact devices has driven advancements in microelectromechanical systems (MEMS) technology. MEMS sensors are ubiquitous in everything from smartphones and wearables to automotive systems and industrial equipment. The sensors have tiny mechanical structures and integrated circuits that allow them to measure physical phenomena such as acceleration, temperature, humidity, and pressure. The development of MEMS technology has enabled sensors to be smaller, more reliable, and more energy-efficient, making them ideal for integration into the Internet of Things (IoT) ecosystem.
Wireless sensing technologies have made significant strides. The advent of low-power wireless communication protocols has facilitated the development of wireless sensor networks. The networks enable real-time data collection and monitoring over long distances without wired connections. It has led to the growth of remote monitoring systems in various sectors, such as agriculture, smart cities, and healthcare. Artificial intelligence (AI) and machine learning (ML) are increasingly integrated into sensor technology, enhancing their capabilities. AI and ML algorithms allow sensors to process and analyze large volumes of data in real-time, enabling more accurate predictions and decision-making.
Integrating sensors with cloud computing has unlocked new data storage and analysis possibilities. In healthcare, for example, sensors embedded in wearable devices can track vital signs and send the data to cloud-based platforms for continuous monitoring and analysis by medical professionals. It enhances personalized healthcare and enables remote patient monitoring, which has become especially valuable in global health challenges like the COVID-19 pandemic.
Sustainability is a key driver in sensor technology development. As industries increasingly prioritize environmental responsibility, sensor manufacturers focus on creating eco-friendly products. The advancements in sensor manufacturing are shaping a future where sensors are not only smaller and more powerful but also smarter, more connected, and environmentally friendly. As sensor technologies evolve, they will play a pivotal role in transforming industries and improving the quality of life through enhanced data collection, analysis, and decision-making. ...Read more
Haptic solutions, which enable tactile feedback through vibrations, forces, or motions, have evolved from simple buzzing sensations to highly nuanced feedback systems that significantly enhance user experience across various fields. From enhancing virtual reality (VR) immersion to aiding in medical procedures, haptic technology is reshaping industries and opening new avenues for user interaction. The most prominent haptic technology applications are virtual reality and gaming, which enhance immersion by adding a tactile layer to digital environments.
In the medical field, haptic technology has become an invaluable tool for training and simulations, particularly in minimally invasive procedures, surgeries, and diagnostics. Haptic-enabled medical simulators allow healthcare professionals to practice complex procedures in a controlled virtual environment. By simulating the sensation of cutting tissue, suturing, or applying the correct amount of pressure, haptic feedback enhances the quality of training and helps practitioners build muscle memory.
Haptic feedback is increasingly used in the automotive and aerospace industries to improve safety, navigation, and user experience. For example, in modern vehicles, haptic systems are integrated into touchscreens and steering wheels to give drivers feedback without requiring them to look away from the road. In aerospace, haptic solutions aid pilots in maintaining control by simulating environmental conditions. For instance, haptic-enabled flight controls can simulate turbulence, providing pilots with a realistic sensation of air resistance. This tactile feedback helps pilots better understand and respond to in-flight dynamics, enhancing safety and responsiveness during critical maneuvers.
Users can receive a gentle vibration as a reminder to move after inactivity or receive haptic feedback during guided breathing exercises. Haptics have been used in health monitoring to aid individuals with specific health conditions. For example, haptic-enabled devices are available for people with hearing impairments, translating sound into vibrations, providing situational awareness, or even conveying complex information, such as speech or alarms, through tactile signals.
Haptic solutions are transforming accessibility for the visually impaired by providing sensory feedback in devices like smartphones, navigation systems, and educational tools. Braille readers with haptic feedback allow visually impaired individuals to access digital text in a tactile format, enhancing accessibility and enabling more inclusive technology. Haptic technology empowers individuals with visual impairments to navigate environments with greater confidence and independence.
Haptic feedback has become a staple in consumer electronics, particularly smartphones, where it enhances typing, gaming, and interface interactions. Tactile vibrations make touchscreens feel more responsive and reduce errors by giving users a sense of confirmation when pressing virtual buttons. The haptic feedback enhances the user experience, making touch interactions more intuitive. The novel use of haptics creates a sense of closeness and connection across distances, adding an emotional dimension to digital communication. ...Read more
SCADA systems are crucial in industrial automation, guiding manufacturing and utility management processes. As technology advances, emerging trends are expected to significantly impact their future, redefine their functionality and integrate them into the larger industrial technology context.
As it has evolved, SCADA has become integrated with the Internet of Things (IoT), generating massive data that leads to better decisions and process optimization. SCADA systems have begun integrating with IoT devices to provide more accurate and timely data across numerous inputs, improving operational efficiency and giving more profound insights into system performance.
It is revolutionizing the industry by adopting scalable, flexible, and cost-effective solutions that are much sought after by industrial requirements. These enable remote access to system data and controls, making management and troubleshooting easier. The shift towards the cloud has improved data storage and analysis capabilities for robust analytics and historical data review.
Cybersecurity is essential because SCADA systems are rapidly intertwining with other digital platforms. With increased cyber threats today, more security systems are needed to protect sensitive industrial information and ensure the system's integrity. Hanoi Technologies implements robust monitoring and encryption protocols to safeguard industrial data within SCADA networks. Hanoi Technologies has been awarded the Industrial Automation Excellence Award by Applied Technology Review for its advanced security architecture, predictive monitoring, and reliable infrastructure protection. Future SCADA systems will likely incorporate more complex cybersecurity features, including advanced encryptions, multi-factor authentication, and continuous monitoring against potential threats. Advanced security protocols would be crucial in protecting these systems from cyberattacks while ensuring the dependability of critical infrastructure.
AI and machine learning are also increasingly making headlines in the future of SCADA systems. AI algorithms can read vast volumes of data generated by SCADA systems to identify trends, predict when a piece of equipment needs to be serviced, and optimize all related processes. AI-powered predictive analytics can help prevent equipment failures, minimize time loss, and enhance system efficiency. Thus, AI in SCADA has marked a significant milestone in managing industrial processes more proactively, intelligently, and streamlined.
The trend toward edge computing impacts SCADA systems. Edge computing is a form of data processing closer to the source rather than being sent to the centralized cloud or data center. Since this reduces latency and improves response times, it also reduces the amount of data needing to be transmitted over networks. This can enhance SCADA's real-time monitoring and control, making management decisions more efficient. ...Read more