He became the thirteenth President of Bell Labs in December Convert currency. Add to Basket. Condition: Brand New. In Stock. Seller Inventory zk More information about this seller Contact this seller. Condition: New. Never used!. Seller Inventory P Seller Inventory NEW Ships with Tracking Number! This will result in two new platform types — platforms that assist humans with perception of the physical world, and platforms that assist humans to control the physical world. These platforms will couple to existing digital web platforms created during Industry 3.
The critical characteristics of these new cyber physical platforms are the ability to support and connect a massive scale of low-latency, real-time data streams from a multitude of sensors, with augmented cognition systems that assist humans in creating new understanding and optimized outcomes. What is your perspective of the future of communications and its key technology elements?
The next industrial revolution will be driven by the digitization of all physical systems to create unprecedented levels of awareness and knowledge. This will allow the augmentation of every process and system, increasing efficiency and productivity — and ultimately creating time. The existing network architecture must radically transform to meet these needs, due to the massive increase in capacity and reliability, and massive decrease in latency, required. This new Future X network will have a number of profound architectural changes, such as moving from a highly centralized to a massively distributed network architecture, and moving from billions of smart devices to trillions of simple sensors, as well as new intelligent control algorithms and systems.
We are at the beginning of a new era of access networks, as industrial automation and new infrastructure and information systems will require capacities of 1Gbps to 10Gbps and latencies of one microsecond to 10 microseconds, with ultra-high reliability and adaptability. We have exhausted the use of the traditional low band [ In addition, we will use new very high-frequency spectrum bands so called mm Wave bands which can support a massive amount of new capacity over short distances up to m.
No, it will augment and massively extend current [LTE] wireless networks. For mobile operators, 5G will enable a new level of network economy and a leap forward in network efficiency — building on the currently deployed LTE macro network infrastructure that provides global coverage and capacity for consumers and businesses, and an increasing number of simple machines and sensors today.
Are there still challenges in the development of the fifth mobile network generation? While we have the first 5G products for enhanced mobile broadband available today, continued innovations are needed to achieve lower costs, higher throughput, and new levels of dynamism and automation.
The Future X Network: Enabling a New Digital Era
There are also important challenges to realize new 5G wireless solutions that have the same high reliability and the same low latency as the cables that connect robots and control servers in factories today. At Bell Labs, we are working with manufacturing industry partners to pioneer novel solutions in all these dimensions. As one example, we have recently demonstrated, for the first time, the control of a robot with a millisecond response time over a 5G-type wireless connection.
And can you imagine a sixth generation — again with new features never seen before?
The Future X Network: A Bell Labs Perspective - Marcus K. Weldon - Google книги
We have seen a new generation of a mobile network about every decade and this will be no different after 5G. In the course of the next ten years there will be so many innovations in technology, architecture, and applications that it is hard to predict what 6G will look like. What are the challenges in the field of Internet of Things IoT and what further research and development is required to interconnect billions of devices?
As already mentioned, wireless connections with millisecond latency and ultra-reliability will be key for critical IoT applications, like control of vehicles or robots. Such applications also require very accurate localization methods. We need highly energy efficient wireless solutions for sensors and other devices that need to operate for ten years on a single battery charge or solar power — drop and forget. We expect a times increase in the number of devices and, hence, need new systems that can handle the massive scale of connections with dynamic scaling, adaptation, and automation.
Do you believe in the realization of fully autonomous vehicles on the road, rail, and in the air? For such systems, the number of variables and scenarios that need to be assessed, predicted, and managed are fewer, and the interworking with legacy [current] vehicles minimized.
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