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Compton, California, just got its first 25 electric school buses - Related to got, california,, school, a, trucks,

Compton, California, just got its first 25 electric school buses

Compton, California, just got its first 25 electric school buses

Compton, California, has unveiled 25 new electric school buses – the school district’s first – and 25 Tellus 180 kW DC fast chargers.

Compton Unified School District (CUSD) in southern Los Angeles County is putting 17 Thomas Built Type A and. Eight Thomas Built Type C electric school buses on the road this spring. In addition to working with Thomas Built, CUSD also collaborated with electrification-as-a-service provider Highland Electric Fleet, utility Southern California Edison, and. School transportation provider Durham School Services.

Environmental Protection Agency’s (EPA) Clean School Bus Program awarded funds for the vehicles in the program’s first round. EPA also awarded CUSD funds for the third round of the program and anticipates introducing an additional 25 EV school buses in the future.

“I can’t stress enough how vital grants like these are and the need for continued support from our partners in government at the state and federal level to fund additional grants for school districts and their transportation partners that are ready to deliver and operate zero-emission buses,” stated Tim Wertner, CEO of Durham School Services.

CUSD. Which serves Compton and parts of the cities of Carson and Los Angeles, currently serves more than 17,000 students at 36 sites. The district has a high school graduation rate of 93% and an 88% college acceptance rate. One in 11 children in Los Angeles County have asthma, which makes the need for emissions-free school transportation that much more pressing.

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Mack Trucks, Terex Utilities partner on electric bucket truck

Mack Trucks, Terex Utilities partner on electric bucket truck

Mack Trucks and Terex Utilities have revealed plans to reveal the next generation of their zero-emissions utility bucket trucks at Work Truck Week in Indiana later this month – and it looks fantastic!

Co-developed by Terex Utilities and Mack Trucks on a Mack MD7 Electric Class 7 chassis, the new Terex bucket truck is a zero-emission utility capable of traveling longer distances and. Hauling more cargo wherever it’s needed to upgrade, or even restore power where it’s needed.

To make it work, Terex installed an Optima HR55 aerial device that draws power from a HyPower SmartPTO (Power Take Off) from Viatec. The SmartPTO replaces a conventional, mechanical PTO that’s powered by an internal combustion generator. In so doing, it avoids a loud idling engine while reducing utility workers’ exposure to toxic exhaust fumes and the heavy particulate emissions matter with idling diesels (even with Tier V standards).

“Our collaboration with Mack Trucks represents continued progress in zero-emissions utility vehicles,” explains Tyler Schwingler. Terex Utilities product marketing manager. “By combining our industry-leading Optima HR55 aerial device with Mack’s innovative MD7 Electric chassis, we’re providing utility companies with a solution that doesn’t compromise on performance or capability while supporting their sustainability goals.”.

In addition helping meet the firm’s ESG goals, the Mack MD Electric is also equipped with the advanced 3rd Eye digital platform. Which integrates AI-driven camera systems to enhance safety and productivity. With up to six HD cameras that display a real-time, 460-degree view on a 7-inch in-cab monitor. The bird’s-eye view all but eliminates blind spots when reversing and moving through high-traffic job sites.

“This electric bucket truck represents the next natural step in our commitment to sustainable transportation solutions,” says George Fotopoulos. Vice president of E-mobility at Mack Trucks. “Our lightweight electric chassis provides the capability to handle more demanding applications, and when combined with Terex’ expertise in utility equipment, we’re delivering a solution that pushes the boundaries of what’s possible in zero tailpipe emissions utility vehicles.”.

Terex will be bringing its new Mack MD Electric-based utility bucket truck to this year’s Work Truck Week at the Indianapolis Convention Center March 8-11.

If all this news sounds familiar. That just means you’ve been paying attention. We covered the HyPower SmartPTO a few months ago in a story about Enwin Utilities. Those trucks were based on a Class 7 (33,000 lb. GVWR) International eMV Series BEV.

The International is a fine truck, of course – but the Mack MD Electric raises the bar a bit with more range than the eMV and. More rear axle capacity than anything else in its class. The MD also has enough commonality with its HD cabs and chassis that parts availability seems to be top of the class. Pair that with parent business Volvo’s global reputation for quality and progressive ideologies and, well … let’s just say we all have our favorites.

SOURCE | PHOTOS: Mack Trucks, via TruckNews, Work Truck Online.

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Massachusetts launches a two-year V2X pilot program

Massachusetts launches a two-year V2X pilot program

Massachusetts is launching a first-of-its-kind statewide vehicle-to-everything (V2X) pilot program. This two-year initiative, backed by the Massachusetts Clean Energy Center (MassCEC), aims to deploy 100 bidirectional chargers to homes, school buses, municipal. And commercial fleet participants across the state.

These bidirectional chargers will enable EVs to serve as mobile energy storage units, collectively providing an estimated MW of new storage capacity. That means EVs won’t just be getting power – they’ll be giving it back to the grid, helping to balance demand and. Support renewable energy use. The program is also focused on ensuring that low-income and disadvantaged communities have access to this cutting-edge tech.

The Massachusetts pilot is one of the largest state-led V2X initiatives in the US and. Is designed to tackle key challenges in deploying bidirectional charging technology. By strategically placing these chargers in a variety of settings, the program aims to identify and resolve barriers to wider adoption of V2X technology.

Massachusetts EV owners and fleet operators enrolled in the program will get bidirectional chargers capable of both vehicle-to-grid (V2G) and. Backup power operations at no cost. Here’s what they stand to gain:

No-cost charging infrastructure: Bidirectional charging stations and installation are fully covered for participants.

Bidirectional charging stations and. Installation are fully covered for participants. Grid resilience: With an estimated MW of new flexible and distributed storage assets, the program strengthens Massachusetts’ energy infrastructure.

With an estimated MW of new flexible and distributed storage assets. The program strengthens Massachusetts’ energy infrastructure. Clean energy integration: V2G technology allows EVs to charge when renewable energy is available and discharge stored energy when it’s not, supporting the state’s clean energy goals.

V2G technology allows EVs to charge when renewable energy is available and. Discharge stored energy when it’s not, supporting the state’s clean energy goals. Backup power: EV batteries can be used as backup power data during outages.

EV batteries can be used as backup power data during outages. Revenue opportunities: Some participants can earn money by sending stored energy back to the grid.

Clean energy solutions firm Resource Innovations and. Vehicle-grid integration tech firm The Mobility House are leading the program’s implementation. “With the charging infrastructure provided through this program, we’re eliminating financial barriers and enabling school districts, homeowners. And fleets to access reliable backup power,” stated Kelly Helfrich of Resource Innovations. “We aim to create a scalable blueprint for V2X programs nationwide.”.

“Bidirectional charging benefits vehicle owners by providing backup power and. Revenue opportunities while strengthening the grid for the entire community,” added Russell Vare of The Mobility House North America.

The program is open for enrollment now through June 2025.

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Market Impact Analysis

Market Growth Trend

2018201920202021202220232024
8.3%10.0%10.5%11.6%12.3%12.7%12.8%
8.3%10.0%10.5%11.6%12.3%12.7%12.8% 2018201920202021202220232024

Quarterly Growth Rate

Q1 2024 Q2 2024 Q3 2024 Q4 2024
10.9% 11.7% 12.4% 12.8%
10.9% Q1 11.7% Q2 12.4% Q3 12.8% Q4

Market Segments and Growth Drivers

Segment Market Share Growth Rate
Connected Cars35%14.2%
Autonomous Driving22%18.5%
EV Technology28%21.9%
Telematics10%9.7%
Other Automotive Tech5%6.3%
Connected Cars35.0%Autonomous Driving22.0%EV Technology28.0%Telematics10.0%Other Automotive Tech5.0%

Technology Maturity Curve

Different technologies within the ecosystem are at varying stages of maturity:

Innovation Trigger Peak of Inflated Expectations Trough of Disillusionment Slope of Enlightenment Plateau of Productivity AI/ML Blockchain VR/AR Cloud Mobile

Competitive Landscape Analysis

Company Market Share
Tesla16.9%
Waymo12.3%
NVIDIA DRIVE10.7%
Bosch9.5%
Continental7.8%

Future Outlook and Predictions

The Electric Compton California landscape is evolving rapidly, driven by technological advancements, changing threat vectors, and shifting business requirements. Based on current trends and expert analyses, we can anticipate several significant developments across different time horizons:

Year-by-Year Technology Evolution

Based on current trajectory and expert analyses, we can project the following development timeline:

2024Early adopters begin implementing specialized solutions with measurable results
2025Industry standards emerging to facilitate broader adoption and integration
2026Mainstream adoption begins as technical barriers are addressed
2027Integration with adjacent technologies creates new capabilities
2028Business models transform as capabilities mature
2029Technology becomes embedded in core infrastructure and processes
2030New paradigms emerge as the technology reaches full maturity

Technology Maturity Curve

Different technologies within the ecosystem are at varying stages of maturity, influencing adoption timelines and investment priorities:

Time / Development Stage Adoption / Maturity Innovation Early Adoption Growth Maturity Decline/Legacy Emerging Tech Current Focus Established Tech Mature Solutions (Interactive diagram available in full report)

Innovation Trigger

  • Generative AI for specialized domains
  • Blockchain for supply chain verification

Peak of Inflated Expectations

  • Digital twins for business processes
  • Quantum-resistant cryptography

Trough of Disillusionment

  • Consumer AR/VR applications
  • General-purpose blockchain

Slope of Enlightenment

  • AI-driven analytics
  • Edge computing

Plateau of Productivity

  • Cloud infrastructure
  • Mobile applications

Technology Evolution Timeline

1-2 Years
  • Technology adoption accelerating across industries
  • digital transformation initiatives becoming mainstream
3-5 Years
  • Significant transformation of business processes through advanced technologies
  • new digital business models emerging
5+ Years
  • Fundamental shifts in how technology integrates with business and society
  • emergence of new technology paradigms

Expert Perspectives

Leading experts in the automotive tech sector provide diverse perspectives on how the landscape will evolve over the coming years:

"Technology transformation will continue to accelerate, creating both challenges and opportunities."

— Industry Expert

"Organizations must balance innovation with practical implementation to achieve meaningful results."

— Technology Analyst

"The most successful adopters will focus on business outcomes rather than technology for its own sake."

— Research Director

Areas of Expert Consensus

  • Acceleration of Innovation: The pace of technological evolution will continue to increase
  • Practical Integration: Focus will shift from proof-of-concept to operational deployment
  • Human-Technology Partnership: Most effective implementations will optimize human-machine collaboration
  • Regulatory Influence: Regulatory frameworks will increasingly shape technology development

Short-Term Outlook (1-2 Years)

In the immediate future, organizations will focus on implementing and optimizing currently available technologies to address pressing automotive tech challenges:

  • Technology adoption accelerating across industries
  • digital transformation initiatives becoming mainstream

These developments will be characterized by incremental improvements to existing frameworks rather than revolutionary changes, with emphasis on practical deployment and measurable outcomes.

Mid-Term Outlook (3-5 Years)

As technologies mature and organizations adapt, more substantial transformations will emerge in how security is approached and implemented:

  • Significant transformation of business processes through advanced technologies
  • new digital business models emerging

This period will see significant changes in security architecture and operational models, with increasing automation and integration between previously siloed security functions. Organizations will shift from reactive to proactive security postures.

Long-Term Outlook (5+ Years)

Looking further ahead, more fundamental shifts will reshape how cybersecurity is conceptualized and implemented across digital ecosystems:

  • Fundamental shifts in how technology integrates with business and society
  • emergence of new technology paradigms

These long-term developments will likely require significant technical breakthroughs, new regulatory frameworks, and evolution in how organizations approach security as a fundamental business function rather than a technical discipline.

Key Risk Factors and Uncertainties

Several critical factors could significantly impact the trajectory of automotive tech evolution:

Regulatory approval delays
Battery technology limitations
Consumer trust issues

Organizations should monitor these factors closely and develop contingency strategies to mitigate potential negative impacts on technology implementation timelines.

Alternative Future Scenarios

The evolution of technology can follow different paths depending on various factors including regulatory developments, investment trends, technological breakthroughs, and market adoption. We analyze three potential scenarios:

Optimistic Scenario

Rapid adoption of advanced technologies with significant business impact

Key Drivers: Supportive regulatory environment, significant research breakthroughs, strong market incentives, and rapid user adoption.

Probability: 25-30%

Base Case Scenario

Measured implementation with incremental improvements

Key Drivers: Balanced regulatory approach, steady technological progress, and selective implementation based on clear ROI.

Probability: 50-60%

Conservative Scenario

Technical and organizational barriers limiting effective adoption

Key Drivers: Restrictive regulations, technical limitations, implementation challenges, and risk-averse organizational cultures.

Probability: 15-20%

Scenario Comparison Matrix

FactorOptimisticBase CaseConservative
Implementation TimelineAcceleratedSteadyDelayed
Market AdoptionWidespreadSelectiveLimited
Technology EvolutionRapidProgressiveIncremental
Regulatory EnvironmentSupportiveBalancedRestrictive
Business ImpactTransformativeSignificantModest

Transformational Impact

Technology becoming increasingly embedded in all aspects of business operations. This evolution will necessitate significant changes in organizational structures, talent development, and strategic planning processes.

The convergence of multiple technological trends—including artificial intelligence, quantum computing, and ubiquitous connectivity—will create both unprecedented security challenges and innovative defensive capabilities.

Implementation Challenges

Technical complexity and organizational readiness remain key challenges. Organizations will need to develop comprehensive change management strategies to successfully navigate these transitions.

Regulatory uncertainty, particularly around emerging technologies like AI in security applications, will require flexible security architectures that can adapt to evolving compliance requirements.

Key Innovations to Watch

Artificial intelligence, distributed systems, and automation technologies leading innovation. Organizations should monitor these developments closely to maintain competitive advantages and effective security postures.

Strategic investments in research partnerships, technology pilots, and talent development will position forward-thinking organizations to leverage these innovations early in their development cycle.

Technical Glossary

Key technical terms and definitions to help understand the technologies discussed in this article.

Understanding the following technical concepts is essential for grasping the full implications of the security threats and defensive measures discussed in this article. These definitions provide context for both technical and non-technical readers.

Filter by difficulty:

vehicle-to-everything intermediate

algorithm

hybrid intermediate

interface

platform intermediate

platform Platforms provide standardized environments that reduce development complexity and enable ecosystem growth through shared functionality and integration capabilities.