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iURBAN Intelligent Urban Energy Tool

iURBAN Intelligent Urban Energy Tool

iURBAN: Intelligent Urban Energy Tool introduces an urban energy tool integrating different ICT energy management systems (both hardware and software) in two European cities providing useful data to a novel decision support system that makes available the necessary parameters for the generation and further operation of associated business models. The business models contribute at a global level to efficiently manage and distribute the energy produced and consumed at a local level (city or neighbourhood) incorporating behavioural aspects of the users into the software platform and in general prosumers. iURBAN integrates a smart Decision Support System (smartDSS) that collects real-time or near real-time data aggregates analyses and suggest actions of energy consumption and production from different buildings renewable energy production resources combined heat and power plants electric vehicles (EV) charge stations storage systems sensors and actuators. The consumption and production data is collected via a heterogeneous data communication protocols and networks. The iURBAN smartDSS through a Local Decision Support System allows the citizens to analyse the consumptions and productions that they are generating receive information about CO2 savings advises in demand response and the possibility to participate actively in the energy market. Whilst through a Centralised Decision Support System allow to utilities ESCOs municipalities or other authorised third parties to: Get a continuous snapshot of city energy consumption and productionManage energy consumption and productionForecasting of energy consumptionPlanning of new energy producers for the future needs of the cityVisualise analyse and take decisions of all the end points that are consuming or producing energy in a city level permitting them to forecast and planning renewable power generation available in the city. | iURBAN Intelligent Urban Energy Tool

GBP 64.99
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Low Power Circuit Design Using Advanced CMOS Technology

Low Power Circuit Design Using Advanced CMOS Technology

Low Power Circuit Design Using Advanced CMOS Technology is a summary of lectures from the first Advanced CMOS Technology Summer School (ACTS) 2017. The slides are selected from the handouts while the text was edited according to the lecturers talk. ACTS is a joint activity supported by the IEEE Circuit and System Society (CASS) and the IEEE Solid-State Circuits Society (SSCS). The goal of the school is to provide society members as well researchers and engineers from industry the opportunity to learn about new emerging areas from leading experts in the field. ACTS is an example of high-level continuous education for junior engineers teachers in academe and students. ACTS was the results of a successful collaboration between societies the local chapter leaders and industry leaders. This summer school was the brainchild of Dr. Zhihua Wang with strong support from volunteers from both the IEEE SSCS and CASS. In addition the local companies Synopsys China and Beijing IC Park provided support. This first ACTS was held in the summer 2017 in Beijing. The lectures were given by academic researchers and industry experts who presented each 6-hour long lectures on topics covering process technology EDA skill and circuit and layout design skills. The school was hosted and organized by the CASS Beijing Chapter SSCS Beijing Chapter and SSCS Tsinghua Student Chapter. The co-chairs of the first ACTS were Dr. Milin Zhang Dr. Hanjun Jiang and Dr. Liyuan Liu. The first ACTS was a great success as illustrated by the many participants from all over China as well as by the publicity it has been received in various media outlets including Xinhua News one of the most popular news channels in China.

GBP 94.99
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Elementary Vector Calculus and Its Applications with MATLAB Programming

Elementary Vector Calculus and Its Applications with MATLAB Programming

Sir Isaac Newton one of the greatest scientists and mathematicians of all time introduced the notion of a vector to define the existence of gravitational forces the motion of the planets around the sun and the motion of the moon around the earth. Vector calculus is a fundamental scientific tool that allows us to investigate the origins and evolution of space and time as well as the origins of gravity electromagnetism and nuclear forces. Vector calculus is an essential language of mathematical physics and plays a vital role in differential geometry and studies related to partial differential equations widely used in physics engineering fluid flow electromagnetic fields and other disciplines. Vector calculus represents physical quantities in two or three-dimensional space as well as the variations in these quantities. The machinery of differential geometry of which vector calculus is a subset is used to understand most of the analytic results in a more general form. Many topics in the physical sciences can be mathematically studied using vector calculus techniques. This book is designed under the assumption that the readers have no prior knowledge of vector calculus. It begins with an introduction to vectors and scalars and also covers scalar and vector products vector differentiation and integrals Gauss's theorem Stokes's theorem and Green's theorem. The MATLAB programming is given in the last chapter. This book includes many illustrations solved examples practice examples and multiple-choice questions. | Elementary Vector Calculus and Its Applications with MATLAB Programming

GBP 99.99
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Understanding Communications Systems Principles—A Tutorial Approach

Understanding Communications Systems Principles—A Tutorial Approach

Wireless communications and sensing systems are nowadays ubiquitous; cell phones and automotive radars typifying two of the most familiar examples. This book introduces the field by addressing its fundamental principles proceeding from its very beginnings up to today's emerging technologies related to the fifth-generation wireless systems (5G) Multi-Input Multiple Output (MIMO) connectivity and Aerospace/Electronic Warfare Radar. The tone is tutorial. Problems are included at the end of each chapter to facilitate the understanding and assimilation of the material to electrical engineering undergraduate/graduate students and beginning and non-specialist professionals. Free temporary access to Keysight's SystemVue system simulation is provided to further enhance reader learning through hands-on tutorial exercises. Chapter 1 introduces wireless communications and sensing and in particular how curiosity-driven scientific research led to the foundation of the field. Chapter 2 presents a brief introduction to the building blocks that make up wireless systems. Chapter 3 focuses on developing an understanding of the performance parameters that characterize a wireless system. Chapter 4 deals with circuit topologies for modulation and detection. In chapter 5 we cover the fundamental transmitter and receiver systems architectures that enable the transmission of information at precise frequencies and their reception from among a rather large multitude of other signals present in space. Chapter 6 introduces 5G its motivation and its development and adoption challenges for providing unprecedented levels of highest speed wireless connectivity. Chapter 7 takes on the topic of MIMO its justification and its various architectures. Chapter 8 addresses the topic of aerospace/electronic warfare radar and finally Chapter 9 presents three Tutorials utilizing the SystemVue simulation tool. | Understanding Communications Systems Principles—A Tutorial Approach

GBP 115.00
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