Why Kelp Our Model Initiatives ๐ŸŒฟ Kelp Helpers ๐Ÿ—ฟ KiwiKrete โ˜• Calcara ๐Ÿคฟ Removals ๐Ÿง Pingo ๐Ÿ„ Seafooโ„ข ๐Ÿ•น๏ธ Reef Rescue ๐ŸŽฏ SeaSniper โ›ต Sailing Into Sunset ๐ŸŒฟ Founderโ€™s Story ๐Ÿ„ Surf Shacks Help your way!
Kelp Helpers / Pingo
๐Ÿง Mapping & Technology ยท Leaves of the Tree

Pingo

A modular multi-robot mapping platform using autonomous surface and subsurface drones, AR, and biodiversity tools to enable scalable kelp forest restoration โ€” making ocean degradation visible and actionable.

5% to MVP
Early Stage
Budget: $500,000
The Problem & Solution

You can't restore what you can't see

Problems We're Solving
1

Mapping kelp forests is expensive โ€” current methods require costly manual surveys and specialised research vessels

2

Water quality and depth can affect data capture โ€” turbidity limits camera accuracy, depth limits tethered systems

3

Manual collection and processing of biodiversity data is too slow and expensive for large-scale natural capital financing

How Pingo Solves It
1

Autonomous surface vessels (USVs) reduce the cost of ocean mapping by 10โ€“100ร— versus manual survey methods

2

Subsurface ROVs complement surface vessels โ€” together they capture data at depth and in turbid conditions

3

YOLO V8 AI image recognition and eDNA integration automate species identification and biodiversity scoring

Technology Stack

Robots rule the Gulf

๐Ÿšข

Autonomous Surface Vessels (USVs)

Self-navigating boats equipped with underwater cameras, sonar, and GPS. Map kelp forest cover and kina barren extent at scale. Partners: Boxfish Robotics, MAKI (Jeffrey To).

๐Ÿค–

Subsurface ROVs

BlueRobotics BlueROV2 and custom systems for deeper surveys. Captures detailed reef imagery for AI classification. Tethered for real-time control; untethered AUV on roadmap.

๐Ÿง 

AI Image Recognition

YOLO V8 framework being evaluated for automated kina detection and kelp classification. Training on underwater imagery collected from Hauraki Gulf survey sites.

๐Ÿ—บ๏ธ

ESRI ArcGIS Platform

Interactive mapping platform built on ArcGIS โ€” inspired by marinepests.nz. Community contributions from hapu, dive groups, and citizen scientists. Near-real-time kelp health tracking.

๐Ÿ”ฌ

eDNA Integration

Environmental DNA sampling from water columns to detect species presence. Combined with visual surveys for comprehensive biodiversity assessment.

๐Ÿฅฝ

Augmented Reality

AR overlays projected onto water surfaces showing kelp barren extent. Educational applications via mobile, tablets, or AR glasses. Makes the invisible crisis visible.

Technology Partners
๐Ÿค– Boxfish Robotics ๐Ÿšข MAKI (Jeffrey To) ๐Ÿ”ฌ New Dexterity Labs (UoA) ๐ŸŒŠ EnviroStrat ๐Ÿ›๏ธ DOC ๐Ÿ—บ๏ธ ESRI ArcGIS
Roadmap

From concept to ocean intelligence

1

Define & Identify Kina Barren Areas

First field season: visual mapping of priority sites in the Hauraki Gulf with Nelson Smith. Q2 2026 target.

2

Hectare-Based Mapping System

Develop a scalable, hectare-resolution mapping framework for tracking restoration progress โ€” the data layer for the Sponsor a Hectare initiative.

3

Little Barrier / Hauraki Gulf

Full survey of priority restoration zones. Ground-truthed AI classification of kelp vs barren vs recovery states.

4

Kelp Health Dashboard

Public-facing web interface showing kelp health and biodiversity metrics. Near-real-time, community-contributed data. Designed to support natural capital credit applications.

5

HPA Monitoring Infrastructure

KinaKrete Marker Poles as HPA boundary markers โ€” fitted with solar panels, surveillance cameras, and AR markers. $1.2M government monitoring budget earmarked.

Help us map the ocean

Pingo needs $500,000 to reach MVP. We're seeking investment from natural capital credit funds, MPI, and impact investors who understand that you can't protect what you can't see.

Discuss Investment โ†’