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991.
992.
This study investigates the impacts of an electronic marketplace with multiple independent retailers for a smart grocery ordering
system. Apart from replenishing products from suppliers, the system can also purchase/sell products from/to the electronic
marketplace through ‘spot shops’. Both static and dynamic pricing models for the electronic marketplace are developed. An
extensive numerical experiment is conducted and the results show that under both static and dynamic pricing, (i) the inventory
cost of the aggregated supply chain is significantly reduced; (ii) each participant also enjoys significant cost savings from
employing the electronic marketplace. Furthermore, the cost savings increase as the lead times from suppliers increase and/or
the variability of their demands increases. The participants’ cost savings also increase as more participants employ the electronic
marketplace. 相似文献
993.
The electromigration behavior of a Sn-3 wt.%Ag-0.5 wt.%Cu-3 wt.%Bi solder stripe between two Cu electrodes under current stressing
at various densities has been investigated for a current stressing time of 72 h and a temperature of 120°C. After current
stressing at a density of 1.0 × 104 A/cm2, the solder matrix exhibited a slight microstructural change as well as formation of a distributed Cu6Sn5 phase near the anode-side solder/Cu interface. Upon increasing the current density to 3.9 × 104 A/cm2 and 5.0 × 104 A/cm2, a high density of distributed Cu6Sn5 phase was formed across the entire solder stripe, resulting in pronounced microstructural change of the solder. Hillocks
were also formed near the anode-side interface due to accumulation of a Sn-rich phase, a Bi-rich phase, and a distributed
Cu6Sn5 phase, while voids were formed in the solder matrix and at the opposite cathode side. The mechanisms of formation of the
distributed Cu6Sn5 phase and migration of Bi and Sn are discussed. 相似文献
994.
Consider a collection of 802.11 access points. Each serves as the gateway to the Internet for clients in its WiFi cell. These
cells have an arbitrary interference pattern, and reception at a client may be corrupted by transmissions nearby. The popularity
of WiFi has made such dense deployment increasingly common. As interference can seriously degrade performance, there is much
interest in optimizing the configuration of these cells. One factor to consider in optimization is channel share, defined
as the useful fraction of channel bandwidth that an access point gets when there is downlink traffic saturation. Interference
affects channel share on the sender side through carrier sensing and transmission deferral, and on the receiver side through
collisions, which result in exponential backoff and retransmission. There exists a simple, “back-of-the-envelope” (BoE) technique
to model the impact of pairwise sender-side interference. This paper tackles the harder task of determining the impact of
receiver-side and non-pairwise sender-side interference. It proposes a technique for modeling the channel share of wireless
links, and the accuracy is demonstrated with Qualnet simulation. 相似文献
995.
Michael Wu Yang Sun Guohui Wang Joseph R. Cavallaro 《Journal of Signal Processing Systems》2011,65(2):171-183
Turbo code is a computationally intensive channel code that is widely used in current and upcoming wireless standards. General-purpose graphics processor unit (GPGPU) is a programmable commodity processor that achieves high performance computation power by using many simple cores. In this paper, we present a 3GPP LTE compliant Turbo decoder accelerator that takes advantage of the processing power of GPU to offer fast Turbo decoding throughput. Several techniques are used to improve the performance of the decoder. To fully utilize the computational resources on GPU, our decoder can decode multiple codewords simultaneously, divide the workload for a single codeword across multiple cores, and pack multiple codewords to fit the single instruction multiple data (SIMD) instruction width. In addition, we use shared memory judiciously to enable hundreds of concurrent multiple threads while keeping frequently used data local to keep memory access fast. To improve efficiency of the decoder in the high SNR regime, we also present a low complexity early termination scheme based on average extrinsic LLR statistics. Finally, we examine how different workload partitioning choices affect the error correction performance and the decoder throughput. 相似文献
996.
Orthogonal Frequency Division Multiplexing (OFDM) systems are commonly used to mitigate frequency-selective multipath fading
and provide high-speed data transmission. In this paper, we derive new union bounds on the error probability of a coded OFDM
system in wireless environments. In particular, we consider convolutionally coded OFDM systems employing single and multiple
transmit antennas over correlated block fading (CBF) channels with perfect channel state information (CSI). Results show that
the new union bound is tight to simulation results. In addition, the bound accurately captures the effect of the correlation
between sub-carriers channels. It is shown that as the channel becomes more frequency-selective, the performance get better
due to the increased frequency diversity. Moreover, the bound also captures the effect of multi-antenna as space diversity.
The proposed bounds can be applied for coded OFDM systems employing different coding schemes over different channel models. 相似文献
997.
Leandro A. Villas Daniel L. Guidoni Guilherme Maia Richard W. Pazzi Jó Ueyama Antonio A. F. Loureiro 《Wireless Networks》2015,21(2):485-498
Localization and synchronization are fundamental services for many applications in wireless sensor networks (WSNs), since it is often required to know the sensor nodes’ position and global time to relate a given event detection to a specific location and time. However, the localization and synchronization tasks are often performed after the sensor nodes’ deployment on the sensor field. Since manual configuration of sensor nodes is usually an impractical activity, it is necessary to rely on specific algorithms to solve both localization and clock synchronization problems of sensor nodes. With this in mind, in this work we propose a joint solution for the problem of 3D localization and time synchronization in WSNs using an unmanned aerial vehicle (UAV). A UAV equipped with GPS flies over the sensor field broadcasting its geographical position. Therefore, sensor nodes are able to estimate their geographical position and global time without the need of equipping them with a GPS device. Through simulation experiments, we show that our proposed joint solution reduces time synchronization and localization errors as well as energy consumption when compared to solutions found in the literature. 相似文献
998.
主要介绍单片机与手机的硬软件接口技术,并特别指出需要注意的问题,着重说明单片机与手机的数据驱动文件和常用的AT控制指令以及手机可能的错误提示,详细分析单片机控制手机的工作原理,给出两个基于手机短信息的应用实例。 相似文献
999.
矿井断裂构造环境量化分析及其应用 总被引:2,自引:1,他引:2
通过构造定性分析,参数体系建立与统计、作图、计算等一系列研究过程,揭示出控制井田构造成生的几个主要环境因素,建立起矿井构造环境基本模式,并以此指导未采区构造研究和预测工作这种基于环境控制论的观点所提出的矿井构造环境及其控制分析的新思路,在萍乡矿区高坑矿断裂构造评价预测中得到了很好的应用,具有重要的理论和生产意义 相似文献
1000.
Based on the array architecture of multiple transmitting/receiving antennas, Multi-Input Multi-Output (MIMO) radar provides a new mechanism for radar imaging technology. In order to explore the processing approach to this imaging mechanism, the two dimensional (2D) imaging model of MIMO radar is established first, and the spatial sampling ability is analyzed from the concept of spatial convolution of the antenna elements. The target spatial spectral filling format of MIMO radar with monochromatic transmitting signal is described. High-resolution imaging capability of MIMO radar is analyzed according to spatial spectral coverage and the corresponding imaging algorithm is presented. Finally, field imaging experiment is used to demonstrate the superior imaging performance of MIMO radar. 相似文献