Showing posts with label 5G+. Show all posts
Showing posts with label 5G+. Show all posts

How CellMapper & DeadCellZones Improve City Coverage & Reduce Congestion

Reliable cell phone coverage is no longer a luxury—it’s a necessity for work, travel, and daily life. Yet, many cities still struggle with dropped calls, slow data, and congested networks. Two powerful online tools, CellMapper.net and DeadCellZones.com, give users the ability to identify weak coverage, track dead zones, and influence network improvements in specific neighborhoods.

5G Upgrades Los Angeles Needs Before the 2028 Olympics

The 2028 Summer Olympics in Los Angeles will be one of the most connected events in history, attracting millions of visitors, athletes, and media from around the globe. With demand for seamless mobile coverage at an all-time high, wireless carriers will need to significantly improve 5G infrastructure citywide. Here’s where LA must focus its upgrades to ensure a gold-medal connectivity performance.

1. Olympic Venue Clusters

Venues will be the epicenter of high data demand. Crowds will be livestreaming, posting, and using augmented reality features simultaneously. To handle the load, carriers should deploy small cells, mmWave hotspots, and edge computing nodes across:

  • Exposition Park & USC – Home to the LA Memorial Coliseum, BMO Stadium, and the Swim Stadium, requiring dense small cell networks.
  • Inglewood – SoFi Stadium and Intuit Dome already have strong coverage, but will need portable COWs (Cell on Wheels) for event days.
  • Downtown LA – Crypto.com Arena and the Convention Center will require indoor Distributed Antenna Systems (DAS) to handle heavy traffic.
  • Long Beach Waterfront – Temporary aquatic venues will need portable tower deployments along the shoreline.

2. Transportation Hubs & Corridors

Connectivity must be uninterrupted for millions traveling between venues, hotels, and attractions. Priority upgrades include:

  • LAX Airport – Integrating mmWave 5G into the Automated People Mover and terminals for seamless arrivals.
  • Union Station & Metro Rail Lines – Low-band 5G coverage in underground sections for commuters and tourists.
  • Freeway Corridors – Macro and roadside tower enhancements along the I-10, I-405, and US-101 to reduce drops during high travel days.

3. Tourist & High-Traffic Zones

Beyond sports venues, LA’s iconic destinations will see unprecedented crowds during the Olympics. Key areas needing network density improvements:

  • Hollywood & Highland – Beamforming and mmWave deployments to handle photo and video uploads in dense crowds.
  • Santa Monica Pier & Venice Beach – Salt-air resistant small cells to provide stable service in coastal conditions.
  • Griffith Observatory & Park – Elevated macro sites to overcome terrain challenges.

4. Media & Broadcast Centers

Media operations will depend on low-latency, high-bandwidth links for live event coverage. This means:

  • International Broadcast Center (IBC) – Dedicated network slices to support live 4K/8K streaming.
  • Remote Commentary Locations – Portable mmWave units for scenic stand-up broadcasts.

5. Rural & Secondary Venues

Not all Olympic events will happen in central LA. Mountain biking, canoeing, and other competitions may take place in remote locations. Carriers should plan for:

  • Temporary high-capacity 5G towers.
  • Mid-band spectrum deployment for extended range without losing performance.

The Bottom Line

For Los Angeles to deliver a world-class connected experience during the LA28 Olympics, carriers must go beyond standard coverage. Strategic 5G upgrades — from dense small cell deployments and mmWave hotspots to edge computing and network slicing — will be essential to meeting the extraordinary connectivity demands of the Games.

Learn more about LA’s Smart City initiatives for 2028 on the SmartLA 2028 Strategy.

6G vs 5G: Can the Next Network Finally End Dead Zones?

By DeadCellZones.com • August 2025

5G promised gigabit speeds, ultra-low latency, and a new era of connectivity. But for millions of users, especially in rural communities and large buildings, dead zones never went away. Now, with 6G cellular on the horizon, the question is whether this next-generation network can finally deliver.

Smarter Networks, Not Just Faster

While 5G focused on raw speed, 6G’s pitch is about AI-native networks—systems that automatically adapt to location, device, and environmental conditions. This could mean fewer coverage blind spots, as the network learns to route and boost signals where users need them most.

Satellites in the Standard

6G will integrate non-terrestrial networks (NTN)—direct satellite-to-phone links—from day one. This could bring connectivity to remote valleys, ships at sea, and disaster areas without extra hardware. It’s a major step beyond 5G’s limited satellite trials.

Better Indoor and Urban Coverage

Using sub-terahertz spectrum and reconfigurable intelligent surfaces (RIS), 6G aims to push signals into urban canyons and deep inside buildings. RIS technology can reflect and shape radio waves, potentially eliminating dead spots in skyscraper districts, stadiums, and malls.

Near-Instant Latency

5G targeted 1 ms latency but rarely achieved it for consumers. 6G promises 0.1 ms latency, unlocking real-time applications like holographic conferencing, autonomous vehicle coordination, and mission-critical robotics—even in previously marginal coverage areas.

Built-In Sensing

6G networks will include RF sensing, enabling them to detect motion, presence, and environmental changes without GPS or extra sensors. This could allow networks to detect coverage disruptions and fix them on the fly.

Security and Sustainability

With quantum-safe encryption and energy-aware protocols, 6G aims to be more secure and greener than 5G. Lower power use could make it economically viable to expand coverage to rural regions where operating costs are a barrier today.

5G vs 6G at a Glance

Feature 5G 6G
Goal Faster speeds AI-adaptive coverage
Coverage Terrestrial towers Terrestrial + satellite (NTN)
Indoor Gaps Persistent RIS + sub-THz fixes
Latency ~1 ms ~0.1 ms
Sensing Limited Built-in RF sensing

What It Means for Dead Zones

If 6G’s features live up to their potential, today’s dead zones could become rare. With satellite integration, adaptive AI routing, and advanced indoor coverage tools, carriers will have fewer excuses for gaps. But as with 5G, the real proof will come from crowdsourced coverage maps—not carrier marketing.

Follow 6G developments and help map real-world coverage by reporting your dead zones on DeadCellZones.com.

You’re Being Lied To About 5G: Hype vs. Reality

You’re Being Lied To About 5G: Hype vs. Reality

Detecting Phantom Coverage: How Starlink Can Win Over Frustrated Mobile Users

Phantom coverage occurs when a carrier’s map shows service in a location but users still experience weak signal, slow data, or dropped calls. This guide explores how Starlink can identify and solve these gaps to win over dissatisfied mobile customers.

What Is “Phantom Coverage”?

What Is 6G Cellular Compared to 5G?

The wireless industry is already looking beyond 5G to the next major advancement: 6G. While 5G networks are still expanding globally, 6G is expected to revolutionize how we connect by offering ultra-high speeds, extremely low latency, and advanced use cases in AI, automation, and immersive experiences.

6G vs. 5G: Key Differences

The Future of Hardware Development: Integrating AI and 5G for Smarter Systems

AI 5G

Artificial Intelligence (AI) refers to machine learning, neural networks and deep learning, which allow devices to gather information, learn based on information and make decisions without human interference. The 5G mobile network generation is characterized by ultra-low latency, large bandwidth, and the ability to support a huge amount of devices at a time, which is the foundation of real-time data delivery.

The combination of the cognitive abilities of AI and the high-speed connectivity of 5G provides a strong basis of the next-generation hardware systems which enables real-time processing and intelligent decision-making.

With the help of Embrox Solutions, one of the most prominent providers of hardware development services, this article explores how Artificial Intelligence (AI) and 5G technology are changing the face of hardware development. With industries aiming at smarter and more efficient systems, AI and 5G integration are leading the way to innovations that were previously thought of as futuristic.

AI and Hardware Design and Optimization

AI is revolutionizing the process of hardware design by making the process rapid, efficient, and less error-prone. Hardware development was traditionally a manual, slow, and complex calculation and trial-and-error process. Under AI, engineers can carry out predictive modeling to test various design iterations in a short time. AI performs analysis of large data sets simulating real world scenarios to help predict performance under different conditions, which enables engineers to optimize component selection, power consumption and thermal management.

AI also automates testing and optimization in addition to speeding up the design process. AI systems can now run test data on a real-time basis when manual testing may have taken weeks and they can detect issues like performance inefficiencies or potential design issues. This allows engineers to make corrections prior to physical prototypes being constructed, increasing the quality of the product and reducing the time to develop the product.

AI is also constantly learning out of past designs and is adjusting to new trends and industry standards. Using this capability, AI can propose optimizations, e.g. in power consumption or performance in semiconductor design. It also enables the development of custom hardware solutions in such industries as automotive or healthcare, where certain performance and safety standards have to be achieved.

Essentially, AI is transforming the design of hardware to make it faster, less risky, and more accurate and optimized. The role of AI will only increase as industries embrace the use of these technologies and we will see smarter and more efficient hardware solutions.

Radical Change on Hardware Development

The combination of 5G and AI is transforming hardware development, which has led to increased processing capacity, real-time data processing, and edge computing. Such developments are resulting in the development of smarter and more efficient systems in different industries.

  • Improved Processing Capabilities: AI algorithms are very demanding in terms of computing resources. 5G has high bandwidth that enables fast transfer of large data sets and can thus be processed and analyzed efficiently.
  • Real-Time Data Processing: 5G's low latency enables AI systems to process data in real-time, leading to more responsive and adaptive hardware solutions.
  • Edge Computing: The integration of AI with 5G facilitates edge computing, where data is processed closer to its source, reducing delays and bandwidth usage, and enhancing system efficiency.

Real-World Applications in Hardware Systems

The combination of AI and 5G is allowing the creation of new advanced hardware systems in different fields, which results in smarter environments and more efficient operations.

  • Smart Homes: Smart thermostats, security cameras, and other devices apply AI to understand the preferences of the user and 5G to communicate without any problems, resulting in an adaptive and efficient home.
  • Healthcare Devices: Wearables and diagnostic devices make use of AI to analyze the data and 5G to share the information with healthcare experts in a short time to allow prompt medical interventions.
  • Industrial Automation: AI-powered robots and sensors utilize 5G networks for real-time monitoring and control in manufacturing processes, improving productivity and safety.

Case Study: AI Energy Control Solution by Embrox Solutions

Embrox Solutions created an energy management platform that uses AI and combines hardware and software to make it more efficient in terms of energy consumption within residential buildings on behalf of Layla Electric. The answer was retrofitting of current electrical systems with smart devices that can gather data on electricity consumption, humidity, and occupancy. This data was analyzed within AI models to offer predictive optimization, and real-time processing and user interaction was guaranteed by using a scalable cloud backend.

Key Features:

  • Monitoring of electricity consumption in real-time
  • Occupancy and indoor humidity sensing
  • Predictions and analytics through AI
  • Easy interoperability with new and old IoT systems

Technologies Used:

  • Flutter mobile cross-platform
  • Scalable backend infrastructure Node.js and AWS
  • React responsive web interfaces

Outcomes:

The platform offered real-time monitoring, energy usage information and automatic control and energy costs and efficiency were lowered by the users. Layla Electric established the client as one of the pioneers of AI-based energy solutions.

Issues of the Integration of AI and 5G into Hardware

As much as AI and 5G integration is associated with many advantages, there are challenges that should be overcome to achieve successful integration. These issues cut across different spheres of hardware development such as complexity of design, safety of data and the infrastructure required to deploy it. It is necessary to eliminate these obstacles to realize the full potential of 5G and AI technologies.

Challenge

Description

Design Complexity

Engineering expertise is advanced to create hardware that can support processing of AI as well as 5G connectivity.

Security and privacy of data

It is very important to secure the information that travels on 5G networks and is manipulated by AI systems to safeguard the information of the users.

Infrastructure Requirements

The implementation of 5G networks and hardware that supports AI requires considerable investments into infrastructure and system upgrade.

The Future Trends in Hardware Development using AI and 5G

The combination of AI and 5G is likely to become the main trend in the hardware development of the future, as it will make systems more intelligent and efficient. Among the most important consequences, it will mean the development of fully autonomous systems in several industries, such as transportation and logistics. These systems will be autonomous, and AI will facilitate the decision-making process, whereas 5G will offer the real-time connection that will help these systems work without any hassles.

Moreover, smart cities will be built with the help of AI and 5G. These technologies will make the life of people living in the cities better by upgrading the urban infrastructure. By regulating the traffic and distributing energy in a more efficient way, offering smart services, AI and 5G will make cities more responsive and adaptable to the needs of the population.

In addition, AI and 5G will also promote sustainable technologies. The hardware solutions implemented with the help of these technologies will be created with an emphasis on the energy efficiency and environmental sustainability in mind and will provide environmentally friendly options that will have a positive impact on the reduction of the ecological footprint but will not decrease performance.

Conclusion

A combination of AI and 5G is changing the way hardware is developed allowing the development of more efficient and smarter systems. Embrox Solutions is a good example of how the technologies can be tapped to provide innovative solutions to real-life problems. Adopting these technologies will be important to businesses that want to remain competitive and innovative in the fast changing technological environment.

Is Your City Censoring 5G Towers? Why Some Neighborhoods Say No

📡 5G Rollout Meets Resistance: The Hidden Backlash in U.S. Cities

As carriers like Verizon, AT&T, and T-Mobile race to expand 5G networks across America, a wave of grassroots opposition is slowing or halting installations — especially in suburban and residential areas.

From lawsuits and zoning restrictions to emergency moratoriums, more cities and communities are pushing back. Why? Concerns range from property values and aesthetics to health fears and transparency issues.

2024 Pew Research survey findings:

  • 37% of Americans express concern about 5G health impacts.
  • 61% don’t trust cities to notify them about new tower installations.
  • Only 22% support 5G small cells in residential neighborhoods.

🏘️ Why Residents Are Saying "No" to 5G Towers

1. Visual Clutter & Property Devaluation

5G uses "small cells" — compact antennas on streetlights, utility poles, and even new standalone towers, often just 10–50 feet from homes.

🗣️ “They installed a metal pole outside my window with no notice. My property lost value instantly.”
— Resident in Dallas, TX

2022 University of Colorado Study:

  • Homes within 500 feet of a 5G pole sold for 2–7% less.
  • These homes spent 13% longer on the market.

National Institute for Science, Law and Public Policy:

  • 94% of buyers would not purchase a home near a 5G tower.
  • 79% of realtors say it negatively impacts value.

2. Health Concerns — Real or Not, They Persist

  • More than 250 municipalities passed resolutions urging caution or demanding more research.
  • 25+ lawsuits have been filed nationwide to stop or delay towers.

2020 NIH meta-review: “Evidence is inconclusive on long-term millimeter wave exposure in high-density areas.”

3. No Community Input, Fast-Tracked Approvals

FCC Small Cell Order (2018):

  • Permits must be approved in 60 days or less.
  • If no action, installation proceeds by default.
  • Many cities caught off guard.

2023 OpenSignal Report:
74% of small cells in California and Florida were installed without public notice.

🗺️ Where 5G Is Being Delayed, Fought, or Banned

City Population Action Taken Status
Mill Valley, CA14,000Emergency ban on 5G in residential zonesIn effect since 2018
Petaluma, CA60,0001,500-ft setback required near homes/schoolsEnforced
Easton, CT7,6005G moratorium citing health risksActive
Montgomery County, MD1.1 million30-ft setback for small cellsEnforced
Keene, NH23,000Delayed Verizon tower approval 6+ monthsTower approved
Flower Hill, NY4,800Sued to stop 66 small cell nodesSettlement pending
Burlington, MA26,000Court case against tower near homesIn litigation

🏠 How Much Do 5G Towers Hurt Home Values?

By Distance from 5G Tower:

Distance Estimated Value Impact
0–50 feet−7% to −10%
50–150 feet−3% to −6%
150–500 feet−1% to −3%
Over 500 feetMinimal/neutral

Source: Appraisal Research Partners, University of Colorado Boulder

In Flower Hill, NY, residents documented $30K–$100K in potential home value losses from proposed 5G nodes. Similar lawsuits in Maryland and Massachusetts referenced comparable declines.

📢 “A buyer sees a 5G pole and thinks cancer, noise, or tech clutter. That’s a huge red flag in high-end markets.”
— Julie Klein, Greater LA Realtors Association

⚖️ Federal Limits on Local Control

Federal law restricts how much cities can interfere:

  • 1996 Telecommunications Act bars health-based denial of towers.
  • Cities may set limits on height, design, or proximity to schools/homes.
  • Lawsuits may result if delays are too long or overly restrictive.

🔧 What Are the Alternatives?

Cities are exploring compromises:

  • Use of existing poles to minimize clutter
  • Setback rules from residential zones and schools
  • Mandated public notices and approval hearings
  • Adopting “stealth” designs that conceal antennas
💡 Boulder, CO convinced Verizon to reduce pole height and co-locate on existing infrastructure.

📬 Report a 5G Tower or Dispute in Your Area

Deadcellzones.com is building a national map of:

  • Controversial 5G tower locations
  • Lawsuits, moratoriums, and zoning disputes
  • Photos and reports submitted by residents

👉 Submit a report from your city or neighborhood.

Advantages & Disadvantages of Starlink Compared to 5G

In recent years, the race to connect the world wirelessly has intensified with innovations like SpaceX's Starlink satellite internet and the evolution of 5G cellular technology. Both promise high-speed, reliable internet access, but they operate differently and come with distinct advantages and disadvantages. While Starlink has garnered attention for its potential to serve remote areas, it also faces some significant drawbacks compared to traditional 5G or cellular networks.

Prior Notification by 5G Cell Tower Companies and Cities

In our fast-paced digital age, the demand for seamless connectivity is greater than ever before. To meet this demand, cell tower companies and cities are constantly expanding and upgrading their 5G cellular infrastructure. While the growth of cell towers and antennas is essential for improved connectivity, it's equally important that residents are informed and engaged in the process. In this article, we will explore the significance of notifying residents before adding a cell tower or a DAS antenna and how it contributes to a harmonious coexistence between technology and community.

Cell Phone Coverage: A Guide to Choosing the Best Provider

city cell phone coverage on river

In today's connected world, having reliable cell phone coverage is essential. Whether you're streaming videos, making important business calls, or simply staying in touch with loved ones, you want a network that offers wide coverage, fast speeds, and reliable service. With so many providers and coverage maps to navigate, choosing the right cell phone carrier can be overwhelming. That's why we've created this comprehensive guide to help you make an informed decision. 

T-Mobile's 5G Initiatives Integrate Wildfire Spotting AI Cameras

T-Mobile's 5G Initiatives Integrate Wildfire Spotting AI Cameras with Emergency Services

What State Has the Worst Cell Phone Coverage? A Comprehensive Analysis

In today's digital age, staying connected through our cell phones has become a necessity. Whether for work, social interactions, or emergencies, reliable cell phone coverage is crucial. However, not all states in the United States offer the same level of service. In this article and video, we will conduct a comprehensive analysis to identify the state with the worst cell phone coverage, exploring the factors contributing to its challenges and offering insights for users in that region.

What's the Worst Cell Service? 5 Common Complaints Unveiled

Staying connected has become a necessity, and our smartphones serve as lifelines to the digital realm. However, not all cell service providers deliver the same level of connectivity and reliability. If you've ever experienced dropped calls, slow data speeds, or dead zones, you know how frustrating it can be to deal with the worst cell service. We'll explore five common complaints about cell service providers, helping you make an informed decision when choosing the right network for your needs.

How to Understand the Different iPhone Models: A Comprehensive Guide


With each passing year, Apple introduces new iPhone models, packed with innovative features and cutting-edge technology. As a result, understanding the differences between various iPhone models can be a daunting task for consumers. This comprehensive guide aims to simplify the process and help you make an informed decision when choosing the perfect iPhone to suit your needs.  Shop for the latest iPhone models on Amazon

Is mmWave Safe? When Can mmWave Be Dangerous?


The safety of mmWave technology is a topic of ongoing research and discussion. While mmWave technology has been used for various applications, including medical imaging and airport security scanners, the use of mmWave frequencies for widespread wireless communication is relatively new, particularly in the context of 5G networks.

There are a few safety aspects to consider when assessing the safety of mmWave technology:

Will Amazon Prime Mobile (MVNO) Use T-Mobile's Network?

Seattle

My prediction is that Amazon based in Seattle will partner with T-Mobile which is also based in Seattle.  

Locate 5G Cell Towers Near You

5G cell towers near you

To find the nearest 5G cell towers near you, I would suggest using online resources or mobile apps that provide coverage maps or tower locator services.

Are there any regulatory policies governing the installation of 5g cell phone towers?

cell tower regulation
Here is an example of a community action on cell towers

Regulatory policies governing the installation of 5G-capable cell phone towers. 

What is the difference between 4g mobile towers and 5g cell?

What is the difference between 4g mobile towers and 5g cell?

The main difference between 4G mobile towers and 5G cells lies in their underlying technology and capabilities. Here are some key distinctions:

Popular Posts