Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Shiyo Yoshimura is active.

Publication


Featured researches published by Shiyo Yoshimura.


2016 IEEE Symposium in Low-Power and High-Speed Chips (COOL CHIPS XIX) | 2016

Powering-off DRAM with aggressive page-out to storage-class memory in low power virtual memory system

Yusuke Shirota; Shiyo Yoshimura; Satoshi Shirai; Tatsunori Kanai

With the rapidly growing demands for large capacity main memory in server systems and embedded systems, current DRAM-only approach is hitting the limit due to DRAMs capacity scaling issue and significant background power. With the emergence of new non-volatile memories, or storage-class memories (SCMs), we can now explore low power, high capacity memory subsystem by redesigning virtual memory system to be SCM-aware. Most research on virtual memory system design has focused on minimizing page fault frequency due to slow data transfers using storage such as HDD/SSD as virtual memory swap device. However with an SCM-based swap device, its near-DRAM access latency has potential for reducing requisite DRAM size by aggressively evicting pages from DRAM to SCM without sacrificing performance, and thus reducing background power by powering off the freed DRAM space for low power. To select an optimal SCM from among the many candidate SCM technologies, the impact of SCM characteristics was evaluated using full-system simulation. Results show that utilizing SCM with low access latency and low write energy can lead to significant potential reduction of memory subsystem energy by up to 83%, while maintaining performance degradation within acceptable range.


2015 IEEE Symposium in Low-Power and High-Speed Chips (COOL CHIPS XVIII) | 2015

Electronic Paper Display update scheduler for extremely low power non-volatile embedded systems

Yusuke Shirota; Shiyo Yoshimura; Tatsunori Kanai

Aggressive use of low power modes in embedded systems using emerging non-volatile or low power compute state retainable devices can greatly reduce its power consumption of idle-state. However, in general, non-volatile devices require comparatively large power to switch between the stable states. Therefore, to realize extremely low power mobile platforms with powerful multimedia application processor running solely on photovoltaic-power, mitigating power consumption of its active-state is the next issue. Replacing power hungry conventional LCDs with non-volatile displays is inevitable in realizing such low power platforms, but naive replacement is insufficient. As such, low power control cognizant of non-volatile device properties is necessary[2]. We propose a display update request scheduling scheme designed for a promising non-volatile display: Electronic Paper Display(EPD) and give deep analysis of power consumption. Proposed scheme dynamically rearranges update requests ill-suited for EPDs to localized and collision-free low power consuming requests at the device driver level, reducing EPD-based tablets energy consumption by up to 49% without requiring application specific modifications.


Archive | 2012

Control device and computer program product

Hiroyoshi Haruki; Masaya Tarui; Koichi Fujisaki; Tetsuro Kimura; Tatsunori Kanai; Junichi Segawa; Satoshi Shirai; Yusuke Shirota; Akihiro Shibata; Shiyo Yoshimura; Haruhiko Toyama


Archive | 2014

INFORMATION PROCESSING DEVICE AND SEMICONDUCTOR DEVICE

Junichi Segawa; Tatsunori Kanai; Tetsuro Kimura; Koichi Fujisaki; Masaya Tarui; Satoshi Shirai; Hiroyoshi Haruki; Yusuke Shirota; Akihiro Shibata; Shiyo Yoshimura; Haruhiko Toyama


Archive | 2014

Data processing device, display control device, semiconductor chip, method of controlling display device, and computer-readable medium

Yusuke Shirota; Tatsunori Kanai; Tetsuro Kimura; Koichi Fujisaki; Akihiro Shibata; Haruhiko Toyama; Junichi Segawa; Masaya Tarui; Satoshi Shirai; Hiroyoshi Haruki; Shiyo Yoshimura


Archive | 2016

CONTROL DEVICE, DISPLAY DEVICE, CONTROL METHOD AND PROGRAM PRODUCT

Yusuke Shirota; Tatsunori Kanai; Satoshi Shirai; Tetsuro Kimura; Koichi Fujisaki; Junichi Segawa; Masaya Tarui; Akihiro Shibata; Shiyo Yoshimura; Hiroyoshi Haruki


Archive | 2014

INFORMATION PROCESSING APPARATUS, DEVICE CONTROL METHOD, AND COMPUTER PROGRAM PRODUCT

Junichi Segawa; Tatsunori Kanai; Tetsuro Kimura; Yusuke Shirota; Shiyo Yoshimura; Masaya Tarui; Hiroyoshi Haruki; Satoshi Shirai; Koichi Fujisaki; Akihiro Shibata; Haruhiko Toyama


Archive | 2013

Control apparatus and control program

Hiromi Haruki; 洋美 春木; Masaya Taruie; 昌也 樽家; Koichi Fujisaki; 浩一 藤崎; Tetsuo Kimura; 哲郎 木村; Tatsunori Kanai; 達徳 金井; Junichi Segawa; 淳一 瀬川; Satoshi Shirai; 智 白井; Yusuke Shirota; 祐介 城田; Akihiro Shibata; 章博 柴田; Shiyo Yoshimura; 礎 吉村; Haruhiko Toyama; 春彦 外山


Archive | 2013

INFORMATION PROCESSING APPARATUS, OPERATION STATE CONTROL METHOD, AND COMPUTER PROGRAM PRODUCT

Shiyo Yoshimura; Junichi Segawa; Tatsunori Kanai; Tetsuro Kimura; Yusuke Shirota; Masaya Tarui; Hiroyoshi Haruki; Satoshi Shirai; Koichi Fujisaki; Akihiro Shibata; Haruhiko Toyama


Archive | 2016

POWER SYSTEM AND CONTROL DEVICE

Akihiro Shibata; Tatsunori Kanai; Tetsuro Kimura; Koichi Fujisaki; Junichi Segawa; Masaya Tarui; Satoshi Shirai; Yusuke Shirota; Shiyo Yoshimura

Collaboration


Dive into the Shiyo Yoshimura's collaboration.

Researchain Logo
Decentralizing Knowledge