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Titlebook: Energy Efficient Microprocessor Design; Thomas D. Burd,Robert W. Brodersen Book 2002 Springer Science+Business Media New York 2002 Signal.

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發(fā)表于 2025-3-21 18:34:10 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱Energy Efficient Microprocessor Design
編輯Thomas D. Burd,Robert W. Brodersen
視頻videohttp://file.papertrans.cn/311/310272/310272.mp4
圖書封面Titlebook: Energy Efficient Microprocessor Design;  Thomas D. Burd,Robert W. Brodersen Book 2002 Springer Science+Business Media New York 2002 Signal.
描述This work began in 1995 as an outgrowth of the InfoPad project which showed us that in order to reduce the energy consumption of a portable multimedia terminal that something had to be done about the consumption of the microprocessor subsystem. The design of the InfoPad attempted to reduce the requirements of this general pur- pose processor by moving the computation into the network or by the use of highly optimized integrated circuits, but in spite of these efforts it still was a major consumer of energy. The reasons for this became apparent as we determined that the energy required to perform a function in dedicated hardware could be several orders of magnitude lower than that consumed in the InfoPad microprocessor. We therefore set out on a full fledged attack on all aspects of the microprocessor energy consumption [1 J. After considerable analysis it became clear that though better circuit design and a stream- lined architecture would assist in our goal of energy reduction, that the biggest gains were to be found by operating at reduced voltages. For the busses and VO this could be accomplished without significant degradation of the processor performance, but this was not a st
出版日期Book 2002
關(guān)鍵詞Signal; Software; architecture; circuit design; computer; computer architecture; integrated circuit; microp
版次1
doihttps://doi.org/10.1007/978-1-4615-0875-5
isbn_softcover978-1-4613-5282-2
isbn_ebook978-1-4615-0875-5
copyrightSpringer Science+Business Media New York 2002
The information of publication is updating

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Soziale Versorgung zukunftsf?hig gestaltenonsumption as an afterthought, and is not thoroughly analyzed until the design has reached the transistor schematic stage. This is too late in the design process for radical modifications that can lead to a more energy-efficient implementation. Therefore, much as performance is analyzed at the initi
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Ilango Ponnuswami,Tresa J. Sugirtharovided by ARM Ltd.) which fixed both the ISA as well as the processor core interface. However, both the custom physical implementation of the core, as well as the rest of the microprocessor design, were fully optimized for energy efficiency.
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Soziale Vorurteile und soziale Urteileefficiency. This can be either done statically by choosing the single most appropriate voltage for the throughput required or dynamically by using information obtained by the operating system and applications. This chapter introduces switching regulators which allow translations of DC voltages with
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,Wie wird physische Attraktivit?t gemessen?,s chapters. By combining Dynamic Voltage Scaling with energy-efficient architecture and circuit design, the system is able to demonstrate more than an order of magnitude improvement in energy efficiency over more conventionally implemented designs.
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https://doi.org/10.1007/978-3-658-03010-0 by reducing the energy necessary to complete a given task without significantly changing system behavior. Software energy reduction techniques can be divided into two categories: static, which optimizes software before it is executed, and dynamic, which alters the operation of the device at run-tim
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https://doi.org/10.1007/978-3-322-97034-3iciency has lagged behind custom ASIC’s and DSP chips, such that while the processor carries only a fraction of the computational load, it is a significant, if not dominant, component of the overall system energy consumption. In order to address this problem it is necessary to use a design methodolo
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