This website uses cookies
We use cookies to personalise content and ads, to provide social media features and to analyse our traffic. We also share information about your use of our site with our social media, advertising and analytics partners who may combine it with other information that you’ve provided to them or that they’ve collected from your use of their services.
Consent Selection
Details
  • Necessary cookies help make a website usable by enabling basic functions like page navigation and access to secure areas of the website. The website cannot function properly without these cookies.

    • Learn more about this provideropens in a new window
      CookieConsentStores the user's cookie consent state for the current domain
      Maximum Storage Duration: 1 yearType: HTTP Cookie
    • Learn more about this provideropens in a new window
      bcookieUsed in order to detect spam and improve the website's security.
      Maximum Storage Duration: 1 yearType: HTTP Cookie
      li_gcStores the user's cookie consent state for the current domain
      Maximum Storage Duration: 180 daysType: HTTP Cookie
    • Learn more about this provideropens in a new window
      datadomeUsed in context with the website's BotManager. The BotManager detects, categorizes and compiles reports on potential bots trying to access the website.
      Maximum Storage Duration: 1 yearType: HTTP Cookie
    • _pk_testcookie_domainThis cookie determines whether the browser accepts cookies.
      Maximum Storage Duration: 1 dayType: HTTP Cookie
    • __cf_bm [x3]This cookie is used to distinguish between humans and bots. This is beneficial for the website, in order to make valid reports on the use of their website.
      Maximum Storage Duration: 1 dayType: HTTP Cookie
  • Preference cookies enable a website to remember information that changes the way the website behaves or looks, like your preferred language or the region that you are in.
    • Learn more about this provideropens in a new window
      lidcRegisters which server-cluster is serving the visitor. This is used in context with load balancing, in order to optimize user experience.
      Maximum Storage Duration: 1 dayType: HTTP Cookie
  • Statistic cookies help website owners to understand how visitors interact with websites by collecting and reporting information anonymously.
    • Learn more about this provideropens in a new window
      guestRegisters data on visitors' website-behaviour. This is used for internal analysis and website optimization.
      Maximum Storage Duration: 1 monthType: HTTP Cookie
    • Learn more about this provideropens in a new window
      personalization_idThis cookie is set by Twitter - The cookie allows the visitor to share content from the website onto their Twitter profile.
      Maximum Storage Duration: 400 daysType: HTTP Cookie
    • _pk_uidUsed by Piwik Analytics Platform to identify the visitor on repeat visits to the website.
      Maximum Storage Duration: 1 yearType: HTTP Cookie
      _pk_id#Collects statistics on the user's visits to the website, such as the number of visits, average time spent on the website and what pages have been read.
      Maximum Storage Duration: 1 yearType: HTTP Cookie
      _pk_ses#Used by Piwik Analytics Platform to track page requests from the visitor during the session.
      Maximum Storage Duration: 1 dayType: HTTP Cookie
    • FPGSIDRegisters statistical data on users' behaviour on the website. Used for internal analytics by the website operator.
      Maximum Storage Duration: 1 dayType: HTTP Cookie
      FPIDRegisters statistical data on users' behaviour on the website. Used for internal analytics by the website operator.
      Maximum Storage Duration: 400 daysType: HTTP Cookie
      FPLCRegisters a unique ID that is used to generate statistical data on how the visitor uses the website.
      Maximum Storage Duration: 1 dayType: HTTP Cookie
    • _gaRegisters a unique ID that is used to generate statistical data on how the visitor uses the website.
      Maximum Storage Duration: 2 yearsType: HTTP Cookie
      _ga_#Used by Google Analytics to collect data on the number of times a user has visited the website as well as dates for the first and most recent visit.
      Maximum Storage Duration: 2 yearsType: HTTP Cookie
  • Marketing cookies are used to track visitors across websites. The intention is to display ads that are relevant and engaging for the individual user and thereby more valuable for publishers and third party advertisers.
    • Learn more about this provideropens in a new window

      Some of the data collected by this provider is for the purposes of personalization and measuring advertising effectiveness. The provider may use the IP Addresses for ads measurement and ads personalization.

      ads/ga-audiencesUsed by Google AdWords to re-engage visitors that are likely to convert to customers based on the visitor's online behaviour across websites.
      Maximum Storage Duration: SessionType: Pixel Tracker
    • Learn more about this provideropens in a new window
      userRefererDetermines how the user accessed the website. This information is used by the website operator in order to measure the efficiency of their marketing.
      Maximum Storage Duration: 1 monthType: HTTP Cookie
    • Learn more about this provideropens in a new window
      #:session-dataTracks the individual sessions on the website, allowing the website to compile statistical data from multiple visits. This data can also be used to create leads for marketing purposes.
      Maximum Storage Duration: PersistentType: HTML Local Storage
      eng_mtTracks the conversion rate between the user and the advertisement banners on the website - This serves to optimise the relevance of the advertisements on the website.
      Maximum Storage Duration: PersistentType: HTML Local Storage
      t_gidThis cookie assigns a specific visitor ID, when the visitor interacts with ads or content from the website - this allows the website to target the visitor with similar ads or content.
      Maximum Storage Duration: 1 yearType: HTTP Cookie
      t_pt_gidCollects information on user preferences and/or interaction with web-campaign content - This is used on CRM-campaign-platform used by website owners for promoting events or products.
      Maximum Storage Duration: 1 yearType: HTTP Cookie
      taboola global:user-idSets a unique ID for the visitor, that allows third party advertisers to target the visitor with relevant advertisement. This pairing service is provided by third party advertisement hubs, which facilitates real-time bidding for advertisers.
      Maximum Storage Duration: PersistentType: HTML Local Storage
      taboola_session_idThis cookie is used to collect information on a visitor. This information will become an ID string with information on a specific visitor – ID information strings can be used to target groups with similar preferences, or can be used by third-party domains or ad-exchanges.
      Maximum Storage Duration: SessionType: HTTP Cookie
    • Learn more about this provideropens in a new window
      1/i/adsct [x2]Collects data on user behaviour and interaction in order to optimize the website and make advertisement on the website more relevant.
      Maximum Storage Duration: SessionType: Pixel Tracker
      muc_adsCollects data on user behaviour and interaction in order to optimize the website and make advertisement on the website more relevant.
      Maximum Storage Duration: 400 daysType: HTTP Cookie
      guest_idCollects data related to the user's visits to the website, such as the number of visits, average time spent on the website and which pages have been loaded, with the purpose of personalising and improving the Twitter service.
      Maximum Storage Duration: 400 daysType: HTTP Cookie
      guest_id_adsCollects information on user behaviour on multiple websites. This information is used in order to optimize the relevance of advertisement on the website.
      Maximum Storage Duration: 400 daysType: HTTP Cookie
      guest_id_marketingCollects information on user behaviour on multiple websites. This information is used in order to optimize the relevance of advertisement on the website.
      Maximum Storage Duration: 400 daysType: HTTP Cookie
    • _gcl_auUsed by Google AdSense for experimenting with advertisement efficiency across websites using their services.
      Maximum Storage Duration: 3 monthsType: HTTP Cookie
      _gcl_lsTracks the conversion rate between the user and the advertisement banners on the website - This serves to optimise the relevance of the advertisements on the website.
      Maximum Storage Duration: PersistentType: HTML Local Storage
    • pardot [x2]Used in context with Account-Based-Marketing (ABM). The cookie registers data such as IP-addresses, time spent on the website and page requests for the visit. This is used for retargeting of multiple users rooting from the same IP-addresses. ABM usually facilitates B2B marketing purposes.
      Maximum Storage Duration: SessionType: HTTP Cookie
  • Unclassified cookies are cookies that we are in the process of classifying, together with the providers of individual cookies.
    • cs_analytics_ip_blockedPending
      Maximum Storage Duration: SessionType: HTTP Cookie
      user_tokenPending
      Maximum Storage Duration: 1 yearType: HTTP Cookie
    • _twpidPending
      Maximum Storage Duration: SessionType: HTTP Cookie
Cookie declaration last updated on 8/20/26 by Cookiebot
[#IABV2_TITLE#]
[#IABV2_BODY_INTRO#]
[#IABV2_BODY_LEGITIMATE_INTEREST_INTRO#]
[#IABV2_BODY_PREFERENCE_INTRO#]
[#IABV2_BODY_PURPOSES_INTRO#]
[#IABV2_BODY_PURPOSES#]
[#IABV2_BODY_FEATURES_INTRO#]
[#IABV2_BODY_FEATURES#]
[#IABV2_BODY_PARTNERS_INTRO#]
[#IABV2_BODY_PARTNERS#]
About
Cookies are small text files that can be used by websites to make a user's experience more efficient.

The law states that we can store cookies on your device if they are strictly necessary for the operation of this site. For all other types of cookies we need your permission.

This site uses different types of cookies. Some cookies are placed by third party services that appear on our pages.

You can at any time change or withdraw your consent from the Cookie Declaration on our website.

Learn more about who we are, how you can contact us and how we process personal data in our Privacy Policy.

Please state your consent ID and date when you contact us regarding your consent.
Image The Anatomy of Staking Yield

The Anatomy of Staking Yield

Timer7 min read

  • Finance
  • Technology

Introduction

If you follow cryptocurrency, you’ve likely come across the term staking in relation to various crypto assets and applications. As the ecosystem has grown, we find that the word staking has become more of an umbrella term, referring to multiple different practices among users, leading to confusion in an already complex industry.

The two main uses of the word staking refer to:

  1. Depositing tokens into an application to support a service offering for users, and

  2. Locking tokens on a network to propose, attest, and add blocks to a blockchain

The former helps form the foundation of sectors like Decentralised Finance (DeFi), which strives to replicate financial services traditionally offered by institutions and intermediaries, but within cryptocurrency platforms using open sets of collaborators (we’ve written more on this here). The latter however, supports the ongoing operations and security of the Proof-of-Stake (PoS) blockchains that DeFi applications often depend upon to settle transactions. It is a revenue-generating task inside PoS networks that, combined across all chains, has garnered $15 billion in annualised rewards thus far in 2022.

In this article, we’re going to dissect staking according to the second definition above, where PoS blockchains employ stakers to generate and secure their transaction record. Particularly, we’re going to address how these stakers — often called validators — earn yield in exchange for their efforts, and what factors may affect that yield.

Staking as a Validator Means Adding Blocks to a PoS Blockchain

In PoS systems, new blocks are added to the chain by specialised network participants called validators, who are required to both run certain software and lock (or stake) tokens, as a sort of collateral, in order to participate. The software outlines the system’s protocol rules, and among a broader set of instructions, they determine which validators get to submit new blocks and when.

The protocol automatically assigns validators to future time slots, where the likelihood of being selected is proportional to a validator’s total share of the locked (or staked) tokens on the network. Once a new block is proposed, if valid by the rules and approved by other validators on the network, the validator receives a reward. Otherwise, if the submitted block is invalid, the assets locked by the validator are reduced (or slashed) as a penalty for violating the protocol rules.

Block Rewards are Based on Token Issuance and Transaction Fees

Let’s say you’re a validator and you’re lucky enough to be chosen by the protocol to submit a new block to the chain. You add the block, it’s valid, and everyone agrees — you earn the block reward. The block reward is made up of the amount of new token supply issued in the block, plus the sum of transaction fees offered in the block (1).

Given there are effectively no operational expenses for staking and it only involves the locking of assets, the staking yield equation is somewhat simple to calculate:

Staking Yield

However, there is both known and unknown information that these variables are derived from, making it slightly more challenging to forecast a staking yield. For example, transaction fees (as part of the block reward) are generally a voluntary payment by users, often reflecting both the amount of pending transfers on a network and the time sensitivity of a user’s transaction.

Additionally, new token issuance in PoS blockchains has historically been a dynamic measure based on the total network stake, which can be particularly challenging to predict in an emerging industry that continues to experience rapid development. When fully illustrated, the specifics of a validator’s yield calculation look more like this:

Staking RewardsTake note of the final bubble of the equation relating to penalties called slashing, a common incentive mechanism for PoS systems that is designed to encourage validators to act in good faith. These penalties generally result from breaking protocol rules, and while they are oftentimes not factored into network staking yields, we find it to be an important consideration, especially because some of the behaviours constituting a penalty may be accidental, such as temporarily having a node go offline. The mechanics associated with slashing vary per protocol as validators are subject to different sets of rules, however, the punishments are generally realised through either a reduction in validators' locked assets or their rewards.

Percentage of Tokens Staked on the Network, New Issuance of Tokens, and Transaction Fees all Affect Validator Rewards

Validators are selected to add blocks to the chain based on their proportion of staked tokens, therefore a major factor in forecasting yield is the total amount of staked tokens on a network. In other words, your share of the total amount of staked tokens determines your share of the total rewards. This means to have a consistent share of a network’s total rewards, a validator’s staked balance would need to mimic changes to the total amount staked on the network.

Estimating Validators’ Share of Network Rewards

Validators’ ShareHowever, even if a validator’s share of total rewards is held constant, the total reward itself may change over time. This is because the component parts of the rewards are not fixed, namely the issuance of assets and transaction fees per block.

For example, if a protocol reduces its inflation rate (the amount of tokens printed/minted each year), decreasing the amount of new supply released in each block, the total rewards released to all stakers would be reduced. Similarly, if transaction volumes slow, the competition among users to bid their transactions into blocks is lowered, decreasing the transaction fees per block.

Note that the rewards available to stakers would alternatively increase with a higher inflation rate and greater transaction fees. These factors are both unpredictably variable and tend to change bi-directionally over time according to user and developer behaviour.

In the case of Ethereum’s future plans of a Proof-of-Stake Blockchain, the issuance rate of new ether will be dynamically adjusted based on the total amount of staked assets, a design choice meant to encourage staking [with higher supply inflation] when validator participation is low and discourage staking [with lower supply inflation] when validator participation is high.

PoS Ethereum Network Issuance, AnnualisedPoS Ethereum Validator Implied YieldThe above figures show that despite the total issuance rewards nominally increasing as the total amount of stake grows, both issuance and total yields compress, meaning the available rewards are increasing slower than the total amount staked.

In the end, staking yields depend on;

  1. The total amount staked, and

  2. The total amount of rewards released to stakers

However, each of these factors is subject to changes, especially the rewards released to stakers, which in turn are based on:

  1. The inflation schedule of the protocol, and

  2. The transaction fees of users

Price Changes Do Not Directly Affect Staking Yields

Staking yields are delivered in-kind, meaning the issuance and transaction fees rewarded to validators are denominated in terms of the staked token.

In the event a token’s price in dollar terms crashes, there is no direct effect on a network’s staking yield. The dollar price of the token isn’t directly tied to: the total amount of staked tokens, the inflation rate, or the transaction volume. Thus, the amount of tokens delivered to stakers will remain the same, however, the value of those tokens measured in dollars will certainly decrease.

It is worth noting that a decrease in prices may change the behaviour of certain parties that could indirectly affect the staking yield. For example, a reduction in price may cause less speculation among investors, resulting in less lending or trading activity in a network’s suite of applications. The change in users’ behaviour could then result in less transaction volume on the network, reducing the portion of staking yield derived from transaction fees.

Key Takeaway

The CoinShares Research Team believe that staking is a promising revenue generation tool for investors, potentially dampening the negative impact of dilution in inflationary PoS assets. However, it is unclear whether staking will be a reliable real-earnings strategy for business ventures, and also whether these staking assets will continue to accrue value beyond their speculative developmental stages.

Published onMay 18th, 2022

Writer
University of Texas graduate who pioneered the university's first Cryptocurrency Technologies course.

Welcome to CoinShares

Personal Data

0102

When you visit CoinShares website, cookies enhance your experience. They help us to show you more relevant content. Some cookies are necessary for the site to work and will always be active. Blocking some types of cookies may impact your experience of the website and the services which we offer on our website.

We use cookies on our site to optimize our services. Learn more about our EU cookie policy or US cookie policy.

  • Necessary
    Question circle icon
  • Preferences
    Question circle icon
  • Statistical
    Question circle icon
  • Marketing
    Question circle icon
Necessary cookies help make a website usable by enabling basic functions like page navigation and access to secure areas of the website. The website cannot function properly without these cookies.
Preference cookies enable a website to remember information that changes the way the website behaves or looks, like your preferred language or the region that you are in.
Statistic cookies help website owners to understand how visitors interact with websites by collecting and reporting information anonymously.
Marketing cookies are used to track visitors across websites. The intention is to display ads that are relevant and engaging for the individual user and thereby more valuable for publishers and third party advertisers.