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Cyber Security

The Role of AI in Securing Critical Infrastructure

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Critical infrastructure—spanning energy, water, transport, and telecoms—forms the backbone of modern society but faces growing cyber threats in a digital-first world. Global entrepreneur Roman Ziemian emphasises the pivotal role of AI in defending these systems

Critical infrastructure forms the backbone of modern societies, encompassing energy grids, water systems, transportation networks, and telecommunications. These systems are indispensable, but they are also increasingly vulnerable in a digital-first world. As an entrepreneur and someone deeply invested in the transformative potential of technology, I’ve seen firsthand how artificial intelligence (AI) is reshaping industries, especially in the domain of cybersecurity. For a nation like the UAE, where technological innovation is intertwined with its rapid growth, the role of AI in securing critical infrastructure is not just important—it is imperative.

The Growing Threat Landscape
The UAE has emerged as a global leader in technology, sustainability, and innovation. With this leadership comes the responsibility to secure its critical infrastructure against evolving threats. Cyberattacks targeting energy grids, desalination plants, and transportation hubs are no longer hypothetical scenarios.

Events like the 2021 ransomware attack on Colonial Pipeline in the United States remind us that even the most advanced systems are not immune. Traditional security measures, while foundational, struggle to keep pace with the sophistication and speed of modern threats.

This is where AI enters the picture—not as a replacement for human oversight, but as a critical tool to augment our defences. AI provides the capability to predict, detect, and respond to threats at a scale and speed that humans alone cannot achieve.

AI’s Transformative Power in Securing Infrastructure
AI’s role in cybersecurity extends across several key areas that are directly relevant to the operational resilience of critical infrastructure in the UAE:

  1. Proactive threat detection: AI-powered systems analyse vast amounts of data in real-time, identifying anomalies that could signal potential threats. Unlike traditional systems that react after an incident occurs, AI anticipates vulnerabilities by recognising patterns that escape human observation.
  2. Rapid incident response: The speed of cyberattacks necessitates an equally swift response. AI enables automated threat containment, isolating affected systems to prevent lateral movement within a network. For instance, if a water desalination plant in Abu Dhabi faces a ransomware attack, AI can immediately quarantine the compromised systems, ensuring the continued supply of water to residents.
  3. Risk prioritisation: Critical infrastructure often involves complex networks with thousands of potential vulnerabilities. AI helps prioritise these vulnerabilities, enabling security teams to focus on the most critical risks first. This ensures that resources are allocated effectively and that essential services remain operational.
  4. Operational efficiency: In addition to security, AI enhances the efficiency of infrastructure systems. Predictive maintenance powered by AI minimizes downtime by forecasting when machinery or systems might fail. This dual function—security and operational optimisation—makes AI a cornerstone of future-ready infrastructure.

Why This Matters in the UAE
The UAE’s vision, encapsulated in initiatives like the National Artificial Intelligence Strategy 2031 and its leadership in the energy transition, underscores the critical role of AI in its future. As a country with a growing reliance on smart cities, renewable energy grids, and autonomous transportation, the UAE is uniquely positioned to leverage AI to secure its critical infrastructure.

Consider Expo City Dubai, a model for the sustainable, AI-powered urban environments of tomorrow. Such advancements rely heavily on interconnected systems that, if left unprotected, could become targets. The UAE’s proactive adoption of AI in sectors like energy and healthcare sets a precedent for using this technology to safeguard its most vital systems.

Balancing Innovation With Responsibility
While AI presents immense opportunities, it also brings challenges. Over-reliance on AI without proper governance could create new vulnerabilities. For example, adversaries might target the AI systems themselves, manipulating algorithms to bypass security measures. This underscores the need for robust AI governance frameworks, a principle the UAE has already embraced.

Furthermore, the integration of AI should not sideline human expertise. The ideal approach is a partnership where AI handles data-intensive tasks, allowing security professionals to focus on strategic decision-making. This human-AI synergy is the cornerstone of resilient infrastructure.

The Path Forward
The UAE’s leadership in AI provides an opportunity to set global benchmarks for securing critical infrastructure. By fostering public-private collaborations, investing in AI research, and prioritising cybersecurity training, the nation can build a robust defence against future threats. As someone who has witnessed how technology can transform industries, I am optimistic about AI’s potential to secure the systems we rely on daily. In the UAE, this potential aligns perfectly with the country’s ambitious vision for the future.

The integration of AI into critical infrastructure is not a distant goal—it’s happening now. As threats evolve, so must our defences. By embracing AI responsibly and strategically, we can ensure that our infrastructure remains not only operational but also resilient, protecting the lives and livelihoods of millions.

In the end, securing critical infrastructure is not just about preventing attacks; it’s about fostering trust. Trust in technology, trust in our systems and trust in our ability to adapt. AI is not just a tool for defence—it’s a path to resilience.

Cyber Security

Positive Technologies Reports 80% of Middle East Cyberattacks Compromise Confidential Data

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A new study by cybersecurity firm Positive Technologies has shed light on the evolving cyber threat landscape in the Middle East, revealing that a staggering 80% of successful cyberattacks in the region lead to the breach of confidential information. The research, examining the impact of digital transformation, organized cybercrime, and the underground market, highlights the increasing exposure of Middle Eastern nations to sophisticated cyber threats.

The study found that one in three successful cyberattacks were attributed to Advanced Persistent Threat (APT) groups, which predominantly target government institutions and critical infrastructure. While the rapid adoption of new IT solutions is driving efficiency, it simultaneously expands the attack surface for malicious actors.

Cybercriminals in the region heavily utilize social engineering tactics (61% of cases) and malware (51%), often employing a combination of both. Remote Access Trojans (RATs) emerged as a primary weapon in 27% of malware-based attacks, indicating a common objective of gaining long-term access to compromised systems.

The analysis revealed that credentials and trade secrets (29% each) were the most sought-after data, followed by personal information (20%). This stolen data is frequently leveraged for blackmail or sold on the dark web. Beyond data theft, 38% of attacks resulted in the disruption of core business operations, posing significant risks to critical sectors like healthcare, transportation, and government services.

APT groups are identified as the most formidable threat actors due to their substantial resources and advanced technical capabilities. In 2024, they accounted for 32% of recorded attacks, with a clear focus on government and critical infrastructure. Their activities often extend beyond traditional cybercrime, encompassing cyberespionage and even cyberwarfare aimed at undermining trust and demonstrating digital dominance.

Dark web analysis further revealed that government organizations were the most frequently mentioned targets (34%), followed by the industrial sector (20%). Hacktivist activity was also prominent, with ideologically motivated actors often sharing stolen databases freely, exacerbating the cybercrime landscape.

The United Arab Emirates, Saudi Arabia, Israel, and Qatar, all leaders in digital transformation, were the most frequently cited countries on the dark web in connection with stolen data. Experts suggest that the prevalence of advertisements for selling data from these nations underscores the challenges of securing rapidly expanding digital environments, which cybercriminals are quick to exploit.

Positive Technologies analyst Alexey Lukash said, “In the near future, we expect cyberthreats in the Middle East to grow both in scale and sophistication. As digital transformation efforts expand, so does the attack surface, creating more opportunities for hackers of all skill levels. Governments in the region need to focus on protecting critical infrastructure, financial institutions, and government systems. The consequences of successful attacks in these areas could have far-reaching implications for national security and sovereignty.”

To help organizations build stronger defenses against cyberthreats, Positive Technologies recommends implementing modern security measures. These include vulnerability management systems to automate asset management, as well as identify, prioritize, and remediate vulnerabilities. Positive Technologies also suggests using network traffic analysis tools to monitor network activity and detect cyberattacks. Another critical layer of protection involves securing applications. Such solutions are designed to identify vulnerabilities in applications, detect suspicious activity, and take immediate action to prevent attacks.

Positive Technologies emphasizes the need for a comprehensive, result-driven approach to cybersecurity. This strategy is designed to prevent attackers from disrupting critical business processes. Scalable and flexible, it can be tailored to individual organizations, entire industries, or even large-scale digital ecosystems like nations or international alliances. The goal is to deliver clear, measurable results in cybersecurity—not just to meet compliance standards or rely on isolated technical fixes.

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Cyber Security

Axis Communications Sheds Light on Video Surveillance Industry Perspectives on AI

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Axis Communications has published a new report that explores the state of AI in the global video surveillance industry. Titled The State of AI in Video Surveillance, the report examines the key opportunities, challenges and future trends, as well as the responsible practices that are becoming critical for organisations in their use of AI. The report draws insights from qualitative research as well as quantitative data sources, including in-depth interviews with carefully selected experts from the Axis global partner network.

A leading insight featured in the report is the unanimous view among interviewees that interest in the technology has surged over the past few years, with more and more business customers becoming curious and increasingly knowledgeable about its potential applications.

Mats Thulin, Director AI & Analytics Solutions at Axis Communications

“AI is a technology that has the potential to touch every corner and every function of the modern enterprise. That said, any implementations or integrations that aim to drive value come with serious financial and ethical considerations. These considerations should prompt organisations to scrutinise any initiative or investment. Axis’s new report not only shows how AI is transforming the video surveillance landscape, but also how that transformation should ideally be approached,” said Mats Thulin, Director AI & Analytics Solutions at Axis Communications.

According to the Axis report, the move by businesses from on-premise security server systems to hybrid cloud architectures continues at pace, driven by the need for faster processing, improved bandwidth usage and greater scalability. At the same time, cloud-based technology is being combined with edge AI solutions, which play a crucial role by enabling faster, local analytics with minimal latency, a prerequisite for real-time responsiveness in security-related situations.

By moving AI processing closer to the source using edge devices such as cameras, businesses can reduce bandwidth consumption and better support real-time applications like security monitoring. As a result, the hybrid approach is expected to continue to shape the role of AI in security and unlock new business intelligence and operational efficiencies.

A trend that is emerging among businesses is the integration of diverse data for a more comprehensive analysis, transforming safety and security. Experts predict that by integrating additional sensory data, such as audio and contextual environmental factors caught on camera, can lead to enhanced situational awareness and greater actionable insights, offering a more comprehensive understanding of events.

Combining multiple data streams can ultimately lead to improved detection and prediction of potential threats or incidents. For example, in emergency scenarios, pairing visual data with audio analysis can enable security teams to respond more quickly and precisely. This context-aware approach can potentially elevate safety, security and operational efficiency, and reflects how system operators can leverage and process multiple data inputs to make better-informed decisions.

According to the Axis report, interviewees emphasised that responsible AI and ethical considerations are critical priorities in the development and deployment of new systems, raising concerns about decisions potentially based on biased or unreliable AI. Other risks highlighted include those related to privacy violations and how facial and behavioural recognition could have ethical and legal repercussions.

As a result, a recurring theme among interviewees was the importance of embedding responsible AI practices early in the development process. Interviewees also pointed to regulatory frameworks, such as the EU AI Act, as pivotal in shaping responsible use of technology, particularly in high-risk areas. While regulation was broadly acknowledged as necessary to build trust and accountability, several interviewees also stressed the need for balance to safeguard innovation and address privacy and data security concerns.

“The findings of this report reflect how enterprises are viewing the trend of AI holistically, working to have a firm grasp of both how to use the technology effectively and understand the macro implications of its usage. Conversations surrounding privacy and responsibility will continue but so will the pace of innovation and the adoption of technologies that advance the video surveillance industry and lead to new and exciting possibilities,” Thulin added.

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Artificial Intelligence

CyberKnight Partners with Ridge Security for AI-Powered Security Validation

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The automated penetration testing market was valued at roughly $3.1 billion in 2023 and is projected to grow rapidly, with forecasts estimating a compound annual growth rate (CAGR) between 21% and 25%. By 2030, the sector is expected to reach approximately $9 to $10 billion. The broader penetration testing industry is also expanding, with projections indicating it will surpass $5.3 billion by 2027, according to MarketandMarket.

To support enterprises and government entities across the Middle East, Turkey and Africa (META) with identifying and validating vulnerabilities and reducing security gaps in real-time, CyberKnight has partnered with Ridge Security, the World’s First Al-powered Offensive Security Validation Platform. Ridge Security’s products incorporate advanced artificial intelligence to deliver security validation through automated penetration testing and breach and attack simulations.

RidgeBot uses advanced AI to autonomously perform multi-vector iterative attacks, conduct continuous penetration testing, and validate vulnerabilities with zero false positives. RidgeBot has been deployed by customers worldwide as a key element of their journey to evolve from traditional vulnerability management to Continuous Threat Exposure Management (CTEM).

“Ridge Security’s core strength lies in delivering holistic, AI-driven security validation that enables organizations to proactively manage risk and improve operational performance,” said Hom Bahmanyar, Chief Enablement Officer at Ridge Security. “We are delighted to partner with CyberKnight to leverage their network of strategic partners, deep-rooted customer relations, and security expertise to accelerate our expansion plans in the region.”

“Our partnership with Ridge Security is a timely and strategic step, as 69% of organizations are now adopting AI-driven security for threat detection and prevention,” added Wael Jaber, Chief Strategy Officer at CyberKnight. “By joining forces, we enhance our ability to deliver automated, intelligent security validation solutions, reaffirming our commitment to empowering customers with resilient, future-ready cybersecurity across the region.”

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