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<!DOCTYPE html>
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<h6 class="block-title m-b-0 ">AnyWave</h6>
<h1 class="m-t-5">Map like a boss</h1>
<p>We built AnyWave from ground up for aerial surveying. It has the highest resolution sensors in its class, wide angle lenses and accurate GPS. Optically calibrated for accurate remote sensing and geospatial analysis.
</p>
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<h2 class="inline p-r-15 m-b-0"><img src="assets/images/customize.svg" class="feature-icon" alt=""></h2>
<h5 class="block-title m-b-0 inline">Customizable</h5>
<div class="p-l-45">
<h2 class="m-t-0">Mix 'n Match</h2>
<p class="m-t-20">Explore our <a href="kb.html">knowledge base</a> and choose from a dozen benchmarked remote sensing indices. Combine them to measure different aspects of plants, from chlorophyll to water content. Once you have found your fix, contact our <a href="mailto:vlad@quickbird.uk">sales team</a> & our elves will be on it in no time.
</p>
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<h2 class="inline p-r-15 m-b-0"><img src="assets/images/extend.svg" class="feature-icon" alt=""></h2>
<h5 class="block-title m-b-0 inline">Extensible</h5>
<div class="p-l-45">
<h2 class="m-t-0">Automate tasks</h2>
<p class="m-t-20">AnyWave comes bundled with an open-source software that lets you control and extend the camera functionality the way you want it. For you are too smart to be limited to default settings.
<br>
</p>
</div>
</div>
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<h5 class="block-title m-b-0 inline">Zero Configuration</h5>
<div class="p-l-45">
<h2 class="m-t-0">Just plug 'n play</h2>
<p class="m-t-20">Go from 0 to 60fps in 10 seconds or less. AnyWave cameras are designed to work instantly, no configuration, no setup. Just plug in and start playing.</p>
<br>
<br>
<br>
<br>
</div>
</div>
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<h6 class="block-title p-r-5 ">£4,999</h6>
<h6 class="block-title hint-text line-through p-r-5">£14,999</h6>
</div>
<div class="col-xs-7 text-left">
<a href="mailto:vlad@quickbird.uk"><h6 class="block-title m-t-20 p-l-5">Pre-order now</h6></a>
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<h6 class="block-title m-b-0 text-white hint-text ">Vegetation Surveying</h6>
<h1 class="m-t-5 text-white">It sees what you<br>can't</h1>
<p class="m-t-30 text-white">Anywave measures specific wavelengths of light, those not visible to the human eye. This extra "visual" information allows users to draw conclusions about the state of land and vegetation. leaf area, plant height, chlorophyll concentration, growth rate, senescence, water amount and photosynthetic light use efficiency.
</p>
<ul>
<li class="text-white">leaf area</li>
<li class="text-white">plant height</li>
<li class="text-white">chlorophyll concentration</li>
<li class="text-white">growth stage analysis</li>
<li class="text-white">senescence</li>
<li class="text-white">water amount</li>
<li class="text-white">photosynthetic light use efficiency</li>
</ul>
</div>
<div class="col-sm-6">
<img src="assets/images/plants.jpg" class="image-responsive-width md-image-responsive-height" alt="">
</div>
</div>
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<div class="col-sm-6">
<img src="assets/images/drone.jpg" class="image-responsive-width sm-image-responsive-height" alt="">
</div>
<div class="col-sm-4 col-sm-offset-1 p-t-50 sm-p-t-0">
<h6 class="block-title m-b-0 ">that's smart</h6>
<h1 class="m-t-5">Ease of use. Delivered.</h1>
<p class="m-t-30">Anywave uses built-in light sensors to automatically adjust exposure settings, ensuring consistently great image quality in varying lighting conditions. All this requires no configuration. The process is managed by the onboard computer automatically.
<br>
<br>
Anywave is controlled over Wi-fi. After setting up the system, wireless connection is disengaged and system can go airborne. At the end of the flight images in standard GeoTiff format are available over SMB, commonly known as Windows File Share.
</p>
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<h1 class="text-white text-center m-t-5">FAQ</h1>
<br>
<article>
<h5 class="p-t-0 faq-text text-left">
<details>
<summary>Will Wi-Fi interfere with other transmitters on my drone?</summary>
It will not. Wi-Fi is only used to configure the sensor before the flight, and to retrieve images after. During the flight Wi-Fi is disengaged, and does not occupy the spectrum.
<br>
</details>
</h5>
<h5 class="p-t-0 faq-text text-left">
<details>
<summary>Will we have atmospheric correction?</summary>
Eventually. We plan to make a module for Anywave, it would be similar to the light sensors it uses currently, but instead of measuring overall light levels it would consist of many tiny light sensors, each measuring the exact same channels Anywave is imaging. When released, it will be compatible with current version of Anywave, after a software update.
<br>
</details>
</h5>
<h5 class="p-t-0 faq-text text-left">
<details>
<summary>Why does it have fewer megapixels than a mobile phone?</summary>
That’s because marketing department of camera companies counts like
<br><b>Mpixels = Red pixels + Green Pixels + Blue pixels</b>
<br>We count like <b>Mpixels = (Red pixels + Green pixels + Blue pixels) ÷ 3</b>
<br>A 16 megapixel camera only has 8 million green pixels, 4 million blue pixels, and 4 million red pixels. For every spot on the image, the camera only knows one out of three colours. The raw (hence the format, RAW) image looks like this. To get 16 MP images, cameras do something called interpolation: for every pixel, the missing colours are estimated using information from the nearby pixels. This is fine for producing photographs, but it will not produce a scientific measurement. Without this process, your 16MP camera would be producing 4 MP photographs.
<br>
Anywave has a separate sensor dedicated to each channel. In the resulting images each pixel has a real measurement for every colour/channel. If we counted the Megapixels the way ‘normal’ cameras do, a 6 channel Anywave would have resolution of 17 Megapixels.
<br>
</details>
</h5>
<h5 class="p-t-0 faq-text text-left">
<details>
<summary>What is the real accuracy of your GPS?</summary>
When stationary, and with good signal you have 50% chance (CEP50) of getting a position within 1.5 meters your actual location, and 95% chance of getting a position within 3.1 meters. The receiver works with both GNSS and GPS satellites with 32 channels, and we supply a good antenna to maximise your chances of getting good signal.
<br>
Of course drones are not stationary. Vast majority of GPS receivers update their position once a second. If you drone is flying at a moderate 40 km/h, it will travel 11 meters in one second. When you use such GPS to geotag an image, it could be off by many meters!<br>
<br>
<img src="assets/images/gps.jpg" alt="gps" width="800" height="256">
<br>
<br>
That’s why Anywave uses the highest-speed GPS receiver we could get our hands on. It updates position 10 times per second and minimises these errors.
<br>
At the end of the day what we need is not a single image, but a 3D model or an orthomosaic that is accurately geo-referenced. In producing them 3D reconstruction software matches hundreds of images pixel by pixel, and combines all geotags to obtain more accurate location and orientation. Random errors cancel each-other out, while systematic ones such as using out of date GPS position, do not.
</details>
</h5>
<h5 class="p-t-0 faq-text text-left">
<details>
<summary>Will GPS on Anywave interfere with GPS already installed on my drone?</summary>
No, GPS receivers are passive, meaning they only ‘listen’ and do not ‘talk’ back to the satellites. You can have any number of GPS active at the same time.
</details>
</h5>
<h5 class="p-t-0 faq-text text-left">
<details>
<summary>What are the limitations of the GPS?</summary>
You shouldn’t have issues unless you are mounting Anywave on a rocket. Standard COCOM limits apply, GPS will keep working unless you exceed one of the following:
<ul>
<li>velocity greater than 515 m/s AND altitude above 18,000 m</li>
<li>altitude: 100,000 m (max) or -1500 m (min)</li>
<li>speed: 600 m/s </li>
<li>acceleration: 2g</li>
</ul>
</details>
</h5>
<h5 class="p-t-0 faq-text text-left">
<details>
<summary>Why don’t you have RTK?</summary>
RTK GPS would add a lot to the cost to Anywave, and in most cases it is unneeded and impractical.
Besides, RTK needs its own radio link and there are already many transmitters on a drone. Radio control, FPV video and telemetry all compete for spectrum. Many find the signal to be unreliable and just another thing that can go wrong. We prioritise reliable over fancy.
If your project absolutely requires centimetre precision, we recommend that you use ground control points and a total station.
</details>
</h5>
</article>
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<h6 class="block-title m-b-0 text-center">Stay in touch</h6>
<h1 class="text-center m-t-5">Subscribe to product updates</h1>
<p class="p-t-0 text-center">Don't worry we won't spam you. Or share your details with a third-party. You will receive just one email announcing the general availability of AnyWave 2.</p>
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Heimdall Ltd<br/>
Registered in England & Wales | Registration No. 09301940 | VAT Registration GB203856419<br/>
Registered Address | 7 Saunton Way, Birmingham B29 6QH
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