Low-power option Greeks: Efficiency-driven market risk analysis using FPGAs

06/08/2022
by   Mark Klaisoongnoen, et al.
0

Quantitative finance is the use of mathematical models to analyse financial markets and securities. Typically requiring significant amounts of computation, an important question is the role that novel architectures can play in accelerating these models. In this paper we explore the acceleration of the industry standard Securities Technology Analysis Center's (STAC) derivatives risk analysis benchmark STAC-A2™ by porting the Heston stochastic volatility model and Longstaff and Schwartz path reduction onto a Xilinx Alveo U280 FPGA with a focus on efficiency-driven computing. Describing in detail the steps undertaken to optimise the algorithm for the FPGA, we then leverage the flexibility provided by the reconfigurable architecture to explore choices around numerical precision and representation. Insights gained are then exploited in our final performance and energy measurements, where for the efficiency improvement metric we achieve between an 8 times and 185 times improvement on the FPGA compared to two 24-core Intel Xeon Platinum CPUs. The result of this work is not only a show-case for the market risk analysis workload on FPGAs, but furthermore a set of efficiency driven techniques and lessons learnt that can be applied to quantitative finance and computational workloads on reconfigurable architectures more generally.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
12/28/2022

Fast and energy-efficient derivatives risk analysis: Streaming option Greeks on Xilinx and Intel FPGAs

Whilst FPGAs have enjoyed success in accelerating high-frequency financi...
research
07/28/2021

Optimisation of an FPGA Credit Default Swap engine by embracing dataflow techniques

Quantitative finance is the use of mathematical models to analyse financ...
research
11/10/2020

Exploring the acceleration of Nekbone on reconfigurable architectures

Hardware technological advances are struggling to match scientific ambit...
research
07/28/2021

Accelerating advection for atmospheric modelling on Xilinx and Intel FPGAs

Reconfigurable architectures, such as FPGAs, enable the execution of cod...
research
09/28/2018

Improving Reliability, Security, and Efficiency of Reconfigurable Hardware Systems

In this treatise, my research on methods to improve efficiency, reliabil...
research
01/12/2023

RAD-Sim: Rapid Architecture Exploration for Novel Reconfigurable Acceleration Devices

With the continued growth in field-programmable gate array (FPGA) capaci...
research
06/21/2016

Enabling Effective FPGA Debug using Overlays: Opportunities and Challenges

FPGAs are going mainstream. Major companies that were not traditionally ...

Please sign up or login with your details

Forgot password? Click here to reset