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Would you hop on this driverless electric city bus?

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Would you hop on this driverless electric city bus?

Could self-driving electric buses be coming to a city near you? 

Cambridge, U.K., is taking the lead in testing a revolutionary public transit system that could transform urban mobility. The Alexander Dennis Enviro100AEV, equipped with Fusion Processing’s cutting-edge CAVstar automated drive system, is poised to change how people move around the city, offering a sustainable and efficient alternative to traditional buses. 

So, forget what you think you know about public transit. This could be a sneak peek at the future of commuting, potentially disrupting the way we think about public transportation in the U.S. and beyond.

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The Alexander Dennis Enviro100AEV (Alexander Dennis)

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Autonomous electric bus unveiled

Fusion Processing and Alexander Dennis just unveiled the first Enviro100AEV autonomous electric bus. The vehicle combines the best of both worlds: a fully electric powertrain for zero-emission operation and Fusion Processing’s intelligent CAVstar automated drive system. 

Powered by AI, the CAVstar system provides the “brains” for the bus’ self-driving capabilities. Notably, the Enviro100AEV features an impressive energy consumption rate of just 0.54 kWh/km. For context, this metric, standard in many parts of the world, represents energy consumption per kilometer traveled. This demonstrates the bus’ high efficiency. It also supports up to 1.2 GWh of warrantable energy throughput, indicating its robust design and longevity.

The Alexander Dennis Enviro100AEV (Alexander Dennis)

ARE THESE AUTONOMOUS TRANSPORT PODS THE FUTURE OF SKY-HIGH COMMUTING?

From test track to city streets

So, what’s next for this self-driving bus? First, it’s off to the test track to calibrate the CAVstar system. This ensures the bus can handle everything the road throws its way, all while maintaining top-notch safety and efficiency. Once the testing phase is complete, the bus will move to Cambridge, where safety drivers will receive training to supervise the operations. The plan is to launch public services later this year at the Cambridge Biomedical Campus.

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The Alexander Dennis Enviro100AEV (Alexander Dennis)

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Why Cambridge, England?

Cambridge is the perfect place to test out this technology because the Cambridge Biomedical Campus is a hub for world-class biomedical research, patient care and education. The Enviro100AEV isn’t just about self-driving; it’s also about sustainability. As an electric bus, it produces zero emissions, helping to create a cleaner, greener city. The hope is that autonomous buses like this will not only improve the efficiency of public transport but also make it more environmentally friendly.

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The Alexander Dennis Enviro100AEV (Alexander Dennis)

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What’s the big deal?

Why should you care about self-driving buses in Cambridge? This project provides a glimpse into the future of urban transportation, showcasing how technology can improve efficiency, reduce emissions and potentially transform how we design and manage our cities. The involvement of NFI Group through Alexander Dennis, a company with a significant presence in the North American market, suggests that the lessons learned and technologies developed in Cambridge could eventually find their way to cities across the United States.

The Alexander Dennis Enviro100AEV (Alexander Dennis)

The Connector Project: A collaborative effort

This development is part of the Connector project, an initiative backed by Innovate UK and spearheaded by the Greater Cambridge Partnership. It’s a team effort, with Fusion Processing, Alexander Dennis, IPG Automotive, dRisk and Gamma Energy all pitching in. Plus, the U.K. government’s Centre for Connected & Autonomous Vehicles is providing funding and guidance.

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The Alexander Dennis Enviro100AEV (Alexander Dennis)

What they’re saying

Jim Hutchinson, CEO of Fusion Processing, is understandably excited: “This is a landmark achievement for Fusion Processing and our CAVstar system. We are proud to play a pivotal role in revolutionizing public transport with autonomous technology.”

Councillor Elisa Meschini, chair of the Greater Cambridge Partnership’s Executive Board, added, “The Connector project positions Cambridge at the forefront of innovation by trialing autonomous vehicles on our roads… This initiative not only paves the way for more sustainable and efficient travel but also highlights the power of collaboration in shaping the future of public transport.”

Jamie Wilson, head of concepts and advanced engineering at Alexander Dennis, said, “The completion of the first Enviro100AEV is a great milestone for the Connector project as we now enter a phase of vehicle testing to ready the technology for public services.”

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Kurt’s key takeaways

The unveiling of the autonomous electric bus in Cambridge marks a significant step toward the future of public transportation. This project highlights the power of collaboration and innovation in creating sustainable and efficient mobility solutions. As the bus undergoes testing and prepares for public service, it paves the way for a potentially transformative shift in how we get around our cities.

Would you feel comfortable riding a bus with no driver? What factors would be most important to you in trusting the safety of this technology, both as a passenger and as someone sharing the road with it? Let us know by writing us at Cyberguy.com/Contact.

For more of my tech tips and security alerts, subscribe to my free CyberGuy Report Newsletter by heading to Cyberguy.com/Newsletter.

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Soundcore new Space 2 promise improved ANC and sound

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Soundcore new Space 2 promise improved ANC and sound

We finally have an update to the Soundcore Space One that launched two and a half years ago. At MWC 2026, Soundcore has announced the Space 2, which will be available in the US on April 21st in three colors — linen white, jet black, and seafoam green — for $129.99. That’s $30 more than the Space One’s original price.

According to Soundcore, the Space 2 have had a full-band noise cancellation upgrade with the focus of those improvements on the low-frequency sounds we all generally use ANC headphones to block — things like airplane, train, and bus engine sounds while traveling. The Space 2 use the same number of microphones as the Space One for noise canceling, instead relying on optimized mic placement and structure and materials improvements for the boost in performance.

Redesigned 40mm drivers incorporate dual layers in their design. There’s a silk diaphragm with metal ceramic that supposedly results in faster transient response — the driver’s ability to respond to sudden sound quickly and accurately — with better balanced sound reproduction. The Space One had great sound performance for the price, but I’m all for any improvement to sound performance accuracy. Like the Space One, the Space 2 will support LDAC high-res audio.

The headphones connect wirelessly over Bluetooth 6.1, although they do not support Auracast transmissions — an unfortunate exclusion. There’s also a 3.5mm jack for a wired connection.

Battery life has been increased to up to 50 hours with ANC and 70 hours with ANC off. This is up from 40 hours with ANC and 55 hours without ANC with the Space One headphones. With a five-minute charge the Space 2 get an additional four hours of listening.

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The Space 2 will include many of the features found on the Space One. You can use HearID 3.0 to go through a series of sound samples to tune the headphones’ sound to your preferences. It worked well for me on the Space One to get them closer to a sound I liked, with a bit of the edge taken off the higher frequencies. There’s also a sensor that detects when you remove the headphones and stops playback so you don’t miss any of your music or podcast. They once again come with a cloth bag that matches the color of the headphones instead of a case, which is one change I wish Soundcore had made, as the cloth bag doesn’t offer as much protection if you tend to throw your headphones into your backpack or bag.

The Soundcore Space One were among the best budget ANC headphones when they came out, and still hold up to more recent releases. But with the bump in price to over $100 for the Space 2, there’s a bit more expectation on them. ANC performance continues to improve — and products get cheaper — across manufacturers, so the Soundcore Space 2 has some competition from companies like Sony, EarFun, and JLab. If the ANC on the Space 2 stands up to current budget headphones and they still sound as good and are as comfortable as the Space One, you can expect to see the new Soundcore Space 2 on many recommendation lists.

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Tired of websites blocking your VPN? A dedicated IP fixes that

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Tired of websites blocking your VPN? A dedicated IP fixes that

NEWYou can now listen to Fox News articles!

If you have ever turned on your VPN and suddenly could not log in to your bank, email, streaming service or work portal, you are not imagining things. In fact, this is one of the most common frustrations VPN users face today.

However, the issue is not that VPNs stopped working. Instead, websites have become far more aggressive about blocking traffic that looks suspicious.

As a result, the way your VPN is built now matters just as much as whether you use one at all.

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Shared VPN IPs often trigger red flags, which is why banks, email providers and streaming sites sometimes block access. (Kurt “CyberGuy” Knutsson)

Why websites block many VPN connections

Most VPNs give you a shared IP address. As a result, hundreds or even thousands of people can appear online from the same address at the same time. From a website’s perspective, that traffic pattern raises red flags. When platforms detect too many logins, rapid location changes or unusual activity tied to one IP, they step in quickly. In many cases, they respond by:

  • Blocking access
  • Triggering captchas
  • Requiring extra verification codes
  • Temporarily locking accounts

Meanwhile, you did nothing wrong. Instead, you end up dealing with restrictions caused by other users sharing that same IP address.

What a dedicated IP does differently

With a dedicated IP, you get an address that belongs only to you. Unlike shared VPN connections, no one else uses it.

Each time you connect, you use the same IP address. As a result, you avoid sharing traffic, rotating locations or competing with random users whose activity could trigger blocks.

Because of that consistency, your connection looks much more like a typical home or office internet setup. And that simple difference can dramatically reduce website suspicion and login headaches.

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A dedicated IP gives you a consistent address that looks more like a normal home connection, reducing captchas and login alerts. (Kurt “CyberGuy” Knutsson)

What a dedicated IP can do that shared VPN IPs usually can’t

That consistency does more than reduce suspicion; it improves how smoothly you access the sites and services you use every day.

Access more websites without blocks

Banks, government portals, healthcare sites, and streaming services are far less likely to block a dedicated IP because it does not show heavy or erratic traffic patterns.

Reduce captchas and security challenges

Those endless “prove you’re human” messages are usually triggered by shared IP abuse. A dedicated IP dramatically reduces them.

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Make banking and email logins smoother

Financial institutions and email providers often flag constantly changing IP addresses as suspicious. A dedicated IP stays consistent, so login alerts and lockouts happen far less often.

Support remote work and secure systems

Some employers only allow access from approved IP addresses. Shared VPN IPs cannot be approved. Dedicated IPs can.

Improve streaming reliability

Shared VPN IPs are often the first to get blocked when streaming services crack down. Dedicated IPs are less likely to be flagged because traffic looks normal and predictable.

What a dedicated IP does not do

A dedicated IP:

  • Does not remove encryption
  • Does not expose your identity
  • Does not weaken your privacy

Your traffic remains encrypted, and your real location stays hidden. You simply get a connection that websites trust more.

Who benefits most from a dedicated IP

A dedicated IP is especially helpful if you:

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  • Use online banking regularly
  • Travel and access sites from different locations
  • Work remotely
  • Stream often
  • Get tired of captchas and blocked pages
  • Want a VPN that feels normal to use

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With fewer blocks and smoother logins, a dedicated IP helps your VPN work quietly in the background instead of getting in your way. (Kurt “CyberGuy” Knutsson)

How to choose a VPN that offers a dedicated IP

If you want these benefits, look for a VPN provider that offers a dedicated IP option built directly into its service. Some providers include it in premium plans, while others offer it as an add-on. Either way, the process should be simple. You should be able to select your dedicated IP inside the app without advanced setup or manual configuration. Before signing up, check that the provider also offers strong speeds, reliable uptime and clear privacy policies. A dedicated IP improves access, but overall performance still matters.

 What to look for beyond a dedicated IP

A dedicated IP reduces blocks. However, a quality VPN should also deliver strong security and smooth performance.

Fast, stable connections: Speed matters for streaming, video calls and everyday browsing. Look for providers known for consistent performance.

Wide server coverage: More server locations give you flexibility when traveling and help reduce location errors.

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Clear privacy practices: Choose a VPN with a strict no-logs policy and independent audits when possible.

Secure server technology: Modern VPNs often use RAM-based servers that automatically wipe data on reboot.

Easy-to-use apps: Protection should feel simple, not technical. Clean apps across major devices make daily use effortless.

For the best VPN software, see my expert review of the best VPNs for browsing the web privately on your Windows, Mac, Android & iOS devices at Cyberguy.com

Kurt’s key takeaway

If your VPN keeps getting blocked, the problem may not be the VPN itself. It may be the shared IP address behind it. Websites are increasingly aggressive about suspicious traffic. When hundreds of users share the same IP, banks, email providers and streaming platforms take notice. That is when the captchas, verification codes and account lockouts start. A dedicated IP changes that experience. You still get encryption. You still protect your real location. But your connection looks stable and predictable, which helps you avoid constant interruptions.

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Should protecting your privacy really mean fighting with your bank, email, and streaming apps? Let us know by writing to us at Cyberguy.com

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Polymarket defends its decision to allow betting on war as ‘invaluable’

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Polymarket defends its decision to allow betting on war as ‘invaluable’
It might be World War III, but at least I won $20. | Image: Polymarket / The Verge

Polymarket has been allowing people to bet on when the US would strike Iran next. Obviously, now that it’s actually happened and people have died, the prediction betting market is feeling some pressure. The site has been at the center of controversy before, including suspicions of insider trading on the Super Bowl halftime show and the capture of Venezuelan President Nicolás Maduro.

In a statement posted on its site, Polymarket defended its decision to allow betting on the potential start of a war, saying that it was an “invaluable” source of news and answers, before taking shots at traditional media and Elon Musk’s X. The statement reads:

Read the full story at The Verge.

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