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ENTERPRISE AI · ENVIRONMENTAL LIVESTREAM CASE

Turn scattered environmental cameras
into a single 24/7 livestream network

CORE OUTCOMEOne platform that delivers 24/7 uptime300+ feeds50,000+ concurrent99.9% stabilitymillisecond interaction50k watching at once

Built for the annual environment conference and ongoing public outreach, we shipped a platform that covers multi-source ingest -> stream processing -> CDN delivery -> live interaction -> monitoring & failover — turning hundreds of heterogeneous cameras into one stable, shareable non-profit livestream network.

Book a 30-min consultationSee the technical pipeline
Cameras ingested
300+feeds
Peak concurrency
50K+viewers
Uptime
24/7continuous
Schedule
-2 weeksahead of plan
Live · Stream Event Bus
Live
300+ ingest points
▶
Shantou · Nan'ao Bay monitor
CAM-1000 · RTSP
2
Zhoushan · Dongji Island waters
CAM-1001 · RTSP
3
Xiamen · Huoshaoyu ecological zone
CAM-1002 · HLS
4
Qingdao · Lingshan Bay reserve
CAM-1003 · RTMP
STREAM ENGINE
FFmpeg · ABR
CDN · Edge
QPS▲ 1.4%
9,800
Concurrent viewersStable
41,800
HLS · RTMP · WebRTC
Devices ingested
300+
Peak concurrency
50,000+
Stability
99.9%
Cameras ingested300+ feeds
Real-time transcodeFFmpeg · ABR
Peak concurrency50,000+ viewers
Origin load reduction-80%+
Uptime7x24 continuous
System stability99.9%+
Ingest protocolsRTSP · HLS · RTMP · proprietary
DeliveryLive 2 weeks ahead
Interaction channelWebSocket bidirectional
Cameras ingested300+ feeds
Real-time transcodeFFmpeg · ABR
Peak concurrency50,000+ viewers
Origin load reduction-80%+
Uptime7x24 continuous
System stability99.9%+
Ingest protocolsRTSP · HLS · RTMP · proprietary
DeliveryLive 2 weeks ahead
Interaction channelWebSocket bidirectional
01PROJECT BACKGROUND

Project background — built for the annual environment conference

The brief came from the annual environment conference broadcast — not just to "get it on air," but to consolidate environmental monitoring feeds from across the country into a single shareable, participatory, sustainable non-profit livestream network.

CLIENT GOALS

Client goals

  • 01National environmental livestream hub
  • 02Unified multi-camera ingest
  • 03Stable HD livestream capacity
  • 04Audience interaction and reach
  • 05High-concurrency traffic handling
Covers monitoring sites across multiple provinces, including coastal reserves, marine observatories, wetland parks and protected natural areas.
PROJECT NATUREThis isn't a typical livestream system — it's a multi-source video ingest + real-time stream delivery + non-profit-grade high-availability livestream platform.
Unstable networks in remote areas
Mountains, marine zones and industrial sites are routinely weak-network.
Inconsistent camera brands and protocols
A mix of RTSP, HTTP and proprietary protocols.
Wide variance in source quality
Codecs, bitrates and resolutions vary across feeds.
Sudden peak-traffic spikes
Conference periods concentrate viewership into short windows.
Non-profit streams can't drop
7x24 continuous operation is non-negotiable.
02THE PROBLEM

The real problems the client faced

None of these get solved by "shipping a livestream." Each is a system-engineering problem.

P-01 · PAIN POINT

Lots of cameras, no unified ingest

Devices come from many vendors with mismatched protocols and codec standards.

Different vendorsRTSP · HTTP · proprietaryDifferent codec standards
RTSPHTTPRTMPPRIVATEONVIFHLSUnified standard
P-02 · PAIN POINT

Unstable networks; streams drop easily

Mountainous zones, industrial sites and remote monitor points routinely hit weak networks and high latency.

Weak-network linksHeavy packet lossLarge latency swings
Raw weak-network signalAfter ABR recovery
P-03 · PAIN POINT

Peak traffic crashes the system

Conference promotion concentrates traffic; video requests spike instantly.

Concentrated traffic burstsTens of thousands concurrentOrigin load surges
P-04 · PAIN POINT

Streams are display-only, no interaction or reach

The legacy approach was one-way playback only — no interaction, no reach, no archive.

No real-time interactionNo distribution mechanismNo content archive
PLAYInteractionShare
03HOW WE THINK

Not a "livestream project" — an environmental visualization infrastructure

The challenge was never just "get it on air" — it's running it stably, long-term, at scale, with real reach.

"Design it as a multi-source video ingest + real-time delivery + non-profit distribution platform — not as a livestream project."

— Wavesteam Engineering Team
01
Multi-source ingest
Heterogeneous feeds funneled into one entry point
02
Stream processing
Transcoding, ABR, anomaly recovery
03
CDN delivery
Edge nodes + traffic shaping
04
Live interaction
Bidirectional WebSocket
05
Monitoring & dispatch
Failover, alerts, disaster recovery
04HOW IT WORKS · 5 STEPS

A 24/7 AI + streaming media livestream system

From multi-source ingest to monitoring and dispatch, the five-step pipeline closes the loop — every step is a observable, scalable, shippable engineering component, not a one-off tool.

01
STEP 01

Multi-source camera ingest

300+
Unifying heterogeneous video sources nationwide
Tech
  • Multi-protocol ingest gateway
  • Unified video transcoding
  • Device registry and management
  • Automatic heartbeat checks
Outcomes
  • · Hundreds of cameras ingested as one
  • · Standardized video output
  • · Lower device onboarding cost
02
STEP 02

Stream processing and transcoding

ABR
Keeping the stream stable and clear
Tech
  • FFmpeg streaming engine
  • HLS / RTMP protocols
  • Adaptive bitrate (ABR)
  • Edge-node transcoding
Outcomes
  • · Significant drop in stream interruptions
  • · Improved video stability
  • · 24-hour continuous playback
1080P
720P
480P
03
STEP 03

CDN delivery and high-concurrency architecture

50K+
Handling tens of thousands of viewers
Tech
  • Global CDN distribution
  • Multi-node load balancing
  • Optimized video caching
  • Traffic shaping
Outcomes
  • · Sustains 10K-50K concurrent
  • · Origin load down 80%+
  • · Smoother playback
04
STEP 04

Live interaction and distribution

WSS
From "watching" to "participating"
Tech
  • WebSocket real-time channel
  • Interaction message queue
  • User behavior analytics
  • Share-link optimization
Outcomes
  • · Higher session length
  • · Stronger content distribution
  • · Higher interaction rate
Hi thereWhat a big fishWait, dolphinsHelloFor the causeAnother one15k watching
05
STEP 05

Monitoring, dispatch and incident response

99.9%
Keeping the stream from ever dropping
Tech
  • Real-time monitoring dashboard
  • Automatic failover
  • Multi-source redundancy
  • Alerting system
Outcomes
  • · Sharp drop in stream interruptions
  • · Faster incident response
  • · Stability above 99%
99.9%
System availability
7x24 continuous operation
04+SYSTEM ARCHITECTURE

Layered architecture — from ingest layer to application layer

Four layers, each with a clear engineering responsibility — any layer can be replaced, extended or delivered in parallel.

L4 · ApplicationApplication
Livestream platform · interaction system · control-room dashboard
Livestream platformInteraction systemControl-room dashboard
L3 · DistributionDistribution
CDN network · cache layer · load balancing
Global CDNMulti-tier cacheOrigin protection
L2 · ProcessingProcessing
Transcoding engine · stream processing · adaptive bitrate
FFmpegABREdge transcoding
L1 · IngestIngest
IoT cameras · multi-protocol ingest · video gateway
RTSP / HLS / RTMPDevice managementHeartbeat checks
DESIGN PRINCIPLES
  • Decoupling: each layer ships and scales independently
  • Observability: logs, metrics and traces, end to end
  • Resilience: multi-source redundancy with automatic failover
  • Reusability: the ingest layer transfers to other business lines
Ingest protocols
5 types
Service modules
12 modules
Failover paths
Multi-source redundancy
Data feedback loop
Real-time
06SYSTEM SHOWCASE · MINI PROGRAM

What the system actually looks like in production

The WeChat Mini Program covers sign-in / livestream / knowledge / events / profile — below are real screens shipped to the client.

Blue LIVE · livestream home
Blue LIVE · livestream home
Home stream with live chat
15k watching
Full-screen immersive stream
Full-screen immersive stream
HD playback · 24/7 continuous
Live chat
Tencent Charity · project detail
Tencent Charity · project detail
Project info + live donation stream
24/7 uptime
ALL SCREENS · 9 screens
Hover to pause scrolling
WeChat sign-in
WeChat sign-in
OAuth login · one-tap auth
Blue LIVE · livestream home
Blue LIVE · livestream home
Home stream with live chat
Full-screen immersive stream
Full-screen immersive stream
HD playback · 24/7 continuous
Knowledge · content archive
Knowledge · content archive
Categories: ocean, biology, fish species
Tencent Charity · project detail
Tencent Charity · project detail
Project info + live donation stream
Events · registration detail
Events · registration detail
Offline events with sign-up conversion
Event detail · scroll view
Event detail · scroll view
Full event information layout
Profile · watch history
Profile · watch history
Personal history with interaction entry
Watch history · list view
Watch history · list view
Closed-loop user behavior
WeChat sign-in
WeChat sign-in
OAuth login · one-tap auth
Blue LIVE · livestream home
Blue LIVE · livestream home
Home stream with live chat
Full-screen immersive stream
Full-screen immersive stream
HD playback · 24/7 continuous
Knowledge · content archive
Knowledge · content archive
Categories: ocean, biology, fish species
Tencent Charity · project detail
Tencent Charity · project detail
Project info + live donation stream
Events · registration detail
Events · registration detail
Offline events with sign-up conversion
Event detail · scroll view
Event detail · scroll view
Full event information layout
Profile · watch history
Profile · watch history
Personal history with interaction entry
Watch history · list view
Watch history · list view
Closed-loop user behavior
05PROJECT RESULTS

Final outcomes

Once live, the system runs as a unified national livestream control plane — the win isn't "it shipped," it's "it stays up."

0+
Cameras ingested (feeds)
0+
Peak concurrent viewers
0h
Continuous uptime
0.0%
System stability
BEFORE / AFTER

Before vs. after launch — key metrics

BeforeAfter
Source management
Fragmented ingest
Unified platform
Stability
Frequent drops
24/7 stable operation
Concurrency
Limited
50k+ viewer capacity
Stream quality
Unstable
HD and smooth
Interaction
None
Live interaction system
01 · OUTCOME
National multi-point ingest
Hundreds of environmental monitoring cameras unified onto one platform.
02 · OUTCOME
24-hour continuous operation
Non-stop non-profit livestream capacity, year-round.
03 · OUTCOME
High-concurrency capacity
Tens of thousands of real-time viewers; 50k peak with headroom.
04 · OUTCOME
Stronger non-profit reach
Live interaction plus a content archive lifts environmental reach.
05 · OUTCOME
Reusable foundation
Extensible to city monitoring and IoT visualization platforms.
06 · OUTCOME
High availability and recovery
Multi-source redundancy with automatic failover; 99.9%+ stability.
07WHERE IT FITS

Where else this capability runs

Beyond environmental livestreaming, this is essentially a "real-time visualization network" infrastructure — portable across many business contexts.

SCENE · 01
Urban governance
City real-time monitoring platform
SCENE · 02
Smart industrial parks
Multi-point video management
SCENE · 03
Industrial monitoring
Remote equipment monitoring
SCENE · 04
Tourism livestreams
Scenic-area real-time streams
SCENE · 05
Security systems
Unified multi-camera dispatch
SCENE · 06
Non-profit campaigns
Large-scale content livestream

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Platform Build

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Best for platform products, admin consoles, mini programs and multi-role systems. We start with user journeys, permission design, the data loop and what ships in v1.

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