
Introduction
Connected vehicle architecture. Telematics data collection. Fleet tracking and route optimization. Driver behavior analysis. Vehicle diagnostics (OBD-II).
1. Connected vehicle architecture
1.1 Basic concepts
Connected vehicle architecture is one of the most important topics in this field. Understanding the core concepts will help you design the right system from the beginning.
Key Concepts:
├── Concept 1: Nền tảng lý thuyết
├── Concept 2: Áp dụng thực tế
├── Concept 3: Best practices
└── Concept 4: Anti-patterns cần tránh
1.2 Why is it important?
| Aspect | Not applicable | Correct application |
|---|---|---|
| Performance | Bottlenecks, high latency | Optimized, scalable |
| Reliability | Single point of failure | Fault-tolerant |
| Maintainability | Technical debt accumulated | Clean architecture |
| Security | Vulnerable | Defense in depth |
2. Telematics data collection
2.1 General architecture
┌─────────────────────────────────────────────────────┐
│ SYSTEM ARCHITECTURE │
│ │
│ ┌──────────┐ ┌──────────┐ ┌──────────────────┐ │
│ │ Client │ │ API │ │ Core Service │ │
│ │ Layer │──│ Gateway │──│ Layer │ │
│ └──────────┘ └──────────┘ └──────────────────┘ │
│ │ │
│ ┌──────▼──────┐ │
│ │ Data Layer │ │
│ └─────────────┘ │
└─────────────────────────────────────────────────────┘
2.2 Component Design
Each component in the system needs to be designed with the following principles:
- Single Responsibility: Each component only takes on one responsibility
- Loose Coupling: Minimize dependencies between components
- High Cohesion: Related elements are in the same component
- Interface Segregation: Clear, separate API
3. Fleet tracking and route optimization
3.1 Design Patterns applied
Applied Patterns:
├── Strategy Pattern: Cho phép thay đổi algorithm at runtime
├── Observer Pattern: Event notification mechanism
├── Repository Pattern: Data access abstraction
└── Factory Pattern: Object creation flexibility
3.2 Code Example
// Example implementation
public interface Service {
Result process(Request request);
boolean supports(RequestType type);
}
@Component
public class CoreService implements Service {
@Override
public Result process(Request request) {
// Validate input
validator.validate(request);
// Execute business logic
var result = businessLogic.execute(request);
// Publish domain event
eventBus.publish(new ProcessedEvent(result));
return result;
}
}
4. Driver behavior analysis
4.1 Monitoring & Observability
Observability Stack:
├── Metrics: Prometheus + Grafana
├── Logging: ELK / Loki
├── Tracing: OpenTelemetry + Jaeger
└── Alerting: PagerDuty
4.2 Performance Optimization
| Metrics | Target | Strategy |
|---|---|---|
| Latency p99 | < 100ms | Caching, async processing |
| Throughput | > 10K RPS | Horizontal scaling |
| Availability | 99.99% | Multi-region, failover |
| Error rate | < 0.01% | Circuit breaker, retry |
Summary
In this lesson, we learned about Connected Vehicles & Fleet Management. Key takeaways:
- Understand core concepts and how to apply
- Design architecture in accordance with requirements
- Implementation patterns and best practices
- Production considerations: monitoring, performance, security
Next article: We will continue with the next topic in the series.