1,250 research outputs found
Analysis and Design of Adaptive OCDMA Passive Optical Networks
OCDMA systems can support multiple classes of service by differentiating code
parameters, power level and diversity order. In this paper, we analyze BER
performance of a multi-class 1D/2D OCDMA system and propose a new approximation
method that can be used to generate accurate estimation of system BER using a
simple mathematical form. The proposed approximation provides insight into
proper system level analysis, system level design and sensitivity of system
performance to the factors such as code parameters, power level and diversity
order. Considering code design, code cardinality and system performance
constraints, two design problems are defined and their optimal solutions are
provided. We then propose an adaptive OCDMA-PON that adaptively shares unused
resources of inactive users among active ones to improve upstream system
performance. Using the approximated BER expression and defined design problems,
two adaptive code allocation algorithms for the adaptive OCDMA-PON are
presented and their performances are evaluated by simulation. Simulation
results show that the adaptive code allocation algorithms can increase average
transmission rate or decrease average optical power consumption of ONUs for
dynamic traffic patterns. According to the simulation results, for an adaptive
OCDMA-PON with BER value of 1e-7 and user activity probability of 0.5,
transmission rate (optical power consumption) can be increased (decreased) by a
factor of 2.25 (0.27) compared to fixed code assignment.Comment: 11 pages, 11 figure
An Energy-Efficient Controller for Wirelessly-Powered Communication Networks
In a wirelessly-powered communication network (WPCN), an energy access point
(E-AP) supplies the energy needs of the network nodes through radio frequency
wave transmission, and the nodes store their received energy in their batteries
for possible data transmission. In this paper, we propose an online control
policy for energy transfer from the E-AP to the wireless nodes and for data
transfer among the nodes. With our proposed control policy, all data queues of
the nodes are stable, while the average energy consumption of the network is
shown to be within a bounded gap of the minimum energy required for stabilizing
the network. Our proposed policy is designed using a quadratic Lyapunov
function to capture the limitations on the energy consumption of the nodes
imposed by their battery levels. We show that under the proposed control
policy, the backlog level in the data queues and the stored energy level in the
batteries fluctuate in small intervals around some constant levels.
Consequently, by imposing negligible average data drop rate, the data buffer
size and the battery capacity of the nodes can be significantly reduced
Development of innovative hybrid sandwich panel slabs: Experimental results
The authors appreciate the collaboration of the following labs: Civitest for developing DHCC materials, PIEP for conducting VARTM process (Eng. Luis Oliveira) and Department of Civil Engineering of Minho University to perform the tests (Mr. Antonio Matos and Eng. Marco Jorge).In this paper, a new generation of composite sandwich slab is proposed as a solution for the rehabilitation
of slabs in old masonry buildings. An innovative solution was developed during this research formed by
four components: a Deflection Hardening Cement Composite (DHCC) layer on the top compression skin, a
glass fiber reinforced polymer (GFRP) skin at the bottom tension surface, GFRP ribs to transfer shear from
top to bottom layers, and foam core for thermal-insolation purposes. The DHCC layer contributes significantly
for the load carrying and deflection capacity due to its stiffness, compressive strength and toughness,
offers resistance to the occurrence of buckling phenomena in the GFRP ribs, improves the
performance of this structural concept against impact and fire, and constitutes an excellent medium
for the application of finishing materials, like ceramics or timber. Two different hybrid composite slabs
were developed and tested, and their behavior was assessed under flexural loading. The results showed
that the developed hybrid sandwich slabs accomplish all design requisites for serviceability and ultimate
limit states, and assure a stiffness/dead-weight and load-capacity/dead-weight ratios much higher than
conventional structural slab systems.FCT - Fundação para a Ciência e Tecnologi
Joint Data Routing and Power Scheduling for Wireless Powered Communication Networks
In a wireless powered communication network (WPCN), an energy access point
supplies the energy needs of the network nodes through radio frequency wave
transmission, and the nodes store the received energy in their batteries for
their future data transmission. In this paper, we propose an online stochastic
policy that jointly controls energy transmission from the EAP to the nodes and
data transfer among the nodes. For this purpose, we first introduce a novel
perturbed Lyapunov function to address the limitations on the energy
consumption of the nodes imposed by their batteries. Then, using Lyapunov
optimization method, we propose a policy which is adaptive to any arbitrary
channel statistics in the network. Finally, we provide theoretical analysis for
the performance of the proposed policy and show that it stabilizes the network,
and the average power consumption of the network under this policy is within a
bounded gap of the minimum power level required for stabilizing the network
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