scholarly journals Performance impact of large file transfer on web proxy caching: A case study in a high bandwidth campus network environment

2010 ◽  
Vol 12 (1) ◽  
pp. 52-66 ◽  
Author(s):  
Hyun-Chul Kim ◽  
Dongman Lee ◽  
Kilnam Chon ◽  
Beakcheol Jang ◽  
Taekyoung Kwon ◽  
...  
Author(s):  
Taghareed Abdul-Hameed ◽  
Ziad Hunaiti ◽  
Eliamani Sedoyeka

the main aim of campus network is to efficiently separate, share and access knowledge among its users. The big demand of such systems of distributed knowledge networks is to be able to handle advanced applications which are the end-user requirements. The main goal of this study is to assess the ability of WLAN campus to dealing with applications request of end users in education establishments and network achievement under different conditions of operation. The study has been conducted in two stages: the first stage was accomplished by conducting a survey, using the Student Village network at Anglia Ruskin University as a case study; the main aim was to determine end-use requirements, gather information about the nature applications running by users and get a view about the likely future applications. The second stage was achieved by conducting experiments to evaluate the WLAN campus network performance under various different scenarios: impact of handover from Access Point (AP) to another AP on end-user link performance, network performance in different usage time and network performance in different weather conditions.


Micromachines ◽  
2021 ◽  
Vol 13 (1) ◽  
pp. 52
Author(s):  
Wenze Zhao ◽  
Yajuan Du ◽  
Mingzhe Zhang ◽  
Mingyang Liu ◽  
Kailun Jin ◽  
...  

With the advantage of faster data access than traditional disks, in-memory database systems, such as Redis and Memcached, have been widely applied in data centers and embedded systems. The performance of in-memory database greatly depends on the access speed of memory. With the requirement of high bandwidth and low energy, die-stacked memory (e.g., High Bandwidth Memory (HBM)) has been developed to extend the channel number and width. However, the capacity of die-stacked memory is limited due to the interposer challenge. Thus, hybrid memory system with traditional Dynamic Random Access Memory (DRAM) and die-stacked memory emerges. Existing works have proposed to place and manage data on hybrid memory architecture in the view of hardware. This paper considers to manage in-memory database data in hybrid memory in the view of application. We first perform a preliminary study on the hotness distribution of client requests on Redis. From the results, we observe that most requests happen on a small portion of data objects in in-memory database. Then, we propose the Application-oriented Data Migration called ADM to accelerate in-memory database on hybrid memory. We design a hotness management method and two migration policies to migrate data into or out of HBM. We take Redis under comprehensive benchmarks as a case study for the proposed method. Through the experimental results, it is verified that our proposed method can effectively gain performance improvement and reduce energy consumption compared with existing Redis database.


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