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authorKaran Jayachandra <me@karanj.com>2025-09-24 14:55:28 +0200
committerKaran Jayachandra <me@karanj.com>2025-09-24 14:55:28 +0200
commit9a1294965f82a112079f29447e5e04ecc1f5e4ed (patch)
treeebb50cd05ebff0a95659c9ad2bf57e1858279c16
parenta310009b97862f2735800a32fb6b8c842800160f (diff)
Simplified the README and fixed the first paragraph
-rw-r--r--README.md26
-rw-r--r--content/_index.md17
2 files changed, 7 insertions, 36 deletions
diff --git a/README.md b/README.md
index 70f51b6..8e6634e 100644
--- a/README.md
+++ b/README.md
@@ -1,25 +1,5 @@
-# Karan Jayachandra's Personal Website
+# Karan Jayachandra's Homepage
-## Purpose
+Everyone should have a website. [Here is mine](https://karanj.com).
-This is the most important GIT repository in this workspace and contains information about the author along with technical qualifications and a blog. I would need to make a new blog post every week for posterity. The blog can be found [here](https://www.karanjayachandra.com).
-
-## How to use
-
-Please install the latest extended version of the [Hugo](https://gohugo.io/installation/).
-
-Clone this repository and update the submodules via:
-
-```bash
-git clone https://gitlab.com/KaranJayachandra/karanjayachandra.gitlab.io.git
-cd karanjayachandra.gitlab.io
-git submodule update --init --depth=1
-```
-
-The main static pages can be changes in the content folder while the blog posts need to be created in the content/blog folder. This can be done via:
-
-```bash
-hugo new 'folder_name/file_name'
-```
-
-For static pages, the folder name can be omitted. By default, the markdown pages are created in the content folder. Once you commit to the main branch, the pages is automatically built in the CI/CD pipeline running on GitLab. The page is then automatically updated using the files generated by Hugo.
+The favicon has been generate by [R Islam](https://www.flaticon.com/authors/riajulislam).
diff --git a/content/_index.md b/content/_index.md
index ebf5d4f..aa0a254 100644
--- a/content/_index.md
+++ b/content/_index.md
@@ -1,6 +1,6 @@
# Karan Jayachandra
-This is my home page on the world wide web. You can find information about my work, personal interests and contact information here.
+This is my home page on the world wide web. You can find information about my work and personal interests. You can contact me via the links on the top of the page.
![profile](profile.jpg)
@@ -24,18 +24,9 @@ I am a [Tamilian](https://en.wikipedia.org/wiki/Tamils) born in Hyderabad and br
I am currently working on the next generation of Automotive Radar systems for Adaptive Cruise Control, Lane Change Assist, Blind Spot Detection and Cross Traffic Alert at NXP Semiconductors. My work at NXP includes:
-- System Design: Development and integration of algorithms into a signal processing chain to
-estimate radar target parameters across 3 generations of radar systems. End-to-end testing of
-the developed system using cutting-edge lab equipment and validation of the performance in
-outdoor scenarios. I have developed and tested several sensors that utilize signal processing algorithms.
-- Algorithm Design: I have developed algorithms individually and collaboratively, resulting in
-one patent and paper. I have verified the performance statistically using both simulations and
-data capture from internally developed radar sensors. These algorithms have been used to
-provide feedback to internal designers on future generations of NXP chips.
-- Infrastructure Development: I have been in charge of both the development of simulation and
-lab environments for the test of signal processing algorithms across the Signal Processing
-team in NXP. In this role, I have helped speed up and standardize the testing process across
-multiple teams and projects.
+- System Design: Development and integration of algorithms into a signal processing chain to estimate radar target parameters across 3 generations of radar systems. End-to-end testing of the developed system using cutting-edge lab equipment and validation of the performance in outdoor scenarios. I have developed and tested several sensors that utilize signal processing algorithms.
+- Algorithm Design: I have developed algorithms individually and collaboratively, resulting in one patent and paper. I have verified the performance statistically using both simulations and data capture from internally developed radar sensors. These algorithms have been used to provide feedback to internal designers on future generations of NXP chips.
+- Infrastructure Development: I have been in charge of both the development of simulation and lab environments for the test of signal processing algorithms across the Signal Processing team in NXP. In this role, I have helped speed up and standardize the testing process across multiple teams and projects.
### SAP India