MonetaryUnit (MUE) is a fork of Quark. There will be a total of 1 Quadrillion coins (i.e. 1,000,000,000,000,000 MUE). There is a 40,000,000 MUE pre-mine (0.000004% of total supply) to fund faucet, giveaways, promotions and development of which 9,0000,000 MUE has already been given away or used for development. The release of MonetaryUnit is staggered into 10 different stages. Each “stage” lasts about 18.5 days, and is made up of 40,000 “blocks”. Each block is released every 40 seconds, and a block is the reward for mining the MonetaryUnit network. The block reward changes at every stage, so that the number of coins released per day will change every 18.5 days up until stage 10. At stage 10, the number of coins released per day will always be 86,500 coins per day, or 40 MUE per block. MUE is a coin that has a fair launch with a block reward schedule that increases as time goes on. Here is the block reward schedule: 0.025 MUE reward for first 40,000 blocks (54 MUE/day) 1 MUE reward for next 40,000 blocks (2160 MUE/day) 2 MUE reward for next 40,000 blocks (4320 MUE/day) 4 MUE reward for next 40,000 blocks (8640 MUE/day) 8 MUE reward for next 40,000 blocks (17280 MUE/day) 10 MUE reward for next 40,000 blocks (21600 MUE/day) 20 MUE reward for next 40,000 blocks (43200 MUE/day) 30 MUE reward for next 40,000 blocks (64800 MUE/day) 40 MUE reward thereafter (86400 MUE/day)
High-Performance Blockchain tackles the concept of scalability from a completely different angle. Rather than just looking at the software side of things, the project also tackles the hardware aspect. To realize the optimal performance of blockchain applications, things will need to change in the near future. As such, this team is building an architecture which uses thousands of CPU and FPGA resources to create a more versatile and scalable ecosystem. There are a few aspects of the High-Performance Blockchain project to take into account. First of all, there is the chip-level acceleration engine which provides accelerated hardware chips to power this entire ecosystem. Secondly, the software side of the High-Performance Blockchain is integrated with the new dedicated hardware accelerated engine and focuses on depth and scaling customization. Third, the project claims it can produce a throughput in the millions of transactions without any major problems. While all of this sounds amazing, it is difficult to come by any real information regarding the technical aspects of either the hardware or the software side of High-Performance Blockchain. While the team mainly focuses on blockchain integration for real-world business cases, it remains to be seen how their chips will operate and how their algorithms are created. It seems the High-Performance Blockchain project is closely connected to the NEO infrastructure, which could introduce some interesting developments down the line. Building the High-Performance Blockchain infrastructure will take a lot of time and money. As such, the roadmap is filled with milestones which the team aims to achieve in the coming years. A testnet version of this project will be launched at some point in 2018, which will undergo further improvements for several months. The actual manner will launch in Q2 of 2018 if things go according to plan. However, the official version will not go live until mid-2019 at the earliest.