Rakesh Patel

Senior Product Designer at Raven Protocol

Rakesh Patel is a seasoned Senior Product Designer with extensive experience in leading design initiatives across various industries. Currently at Raven Protocol since June 2023, Rakesh has previously held senior design roles at trica, where skills were applied to enhance a private market investment platform, and at Woovly, where a video-first social commerce approach was pioneered. Rakesh also conceptualized MyKaam, a vernacular video hiring platform, and contributed to design solutions at Tinkerform Innovation Labs, Mintifi Pvt. Ltd., and Skopex. An early career included design positions at YourDOST, Aspricot, and Active Infotronics, showcasing a strong foundation in UI/UX principles and collaboration with cross-functional teams.

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Bengaluru, India

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Raven Protocol

Raven is creating a network of compute nodes that utilize idle compute power for the purposes of AI training where speed is the key. AI companies will be able to train models better and faster. We developed a completely new approach to distribution that speeds up a training run of 1M images and brings it down to a few hours. We solve latency by chunking the data into really small pieces (bytes), maintaining its identity, and then distributing it across the host of devices with a call to action: gradient calculations. Other solutions require high-end compute power. Our approach has no dependency on the system specs of each compute node in the network. Thus, we can utilize idle computer power on normal desktops, laptops, and mobile devices allowing anyone in the world to contribute to the Raven Protocol network. This will bring costs down to a fraction of what you need to pay for traditional cloud services. Most importantly, this means Raven will create the first truly distributed and scalable solution to AI training by speeding up the training process. Our consensus mechanism is something we call Proof-of-Calculation. Proof-of-Calculation will be the primary guideline for the regulation and distribution of incentives to the compute nodes in the network. Following are the two prime deciders for the incentive distribution: Speed: Depending upon how fast a node can perform gradient calculations (in a neural network) and return it back to the Gradient Collector. Redundancy: The 3 fastest redundant calculation will only qualify for receiving the incentive. This will make sure that the gradients that are getting returned are genuine and of the highest quality.


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